Skip to main content

Late Cretaceous Post-Rift to Convergence in Iberia

  • Chapter
  • First Online:
The Geology of Iberia: A Geodynamic Approach

Abstract

Major changes occurred in Iberia during the Late Cretaceous. First, the cessation of the previous rifting episode derived into generalized thermal subsidence in all basins, which in conjunction with warm climate and high sea-levels promoted the widest carbonate platforms ever in Iberia. Second, that post-rift interval was punctuated regionally by a series of tectonic episodes related to intraplate stresses which induced complex paleogeographic patterns, and locally by intense salt tectonics. And third, the onset of Africa-Iberia-Europe convergence, which started in Santonian times, determined the first Alpine contractional episodes in Iberia, which caused major changes in all sedimentary basins. The chapter reviews all those points in an integrated approach through the basins of Iberia.

This is a preview of subscription content, log in via an institution to check access.

Access this chapter

Chapter
USD 29.95
Price excludes VAT (USA)
  • Available as PDF
  • Read on any device
  • Instant download
  • Own it forever
eBook
USD 189.00
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Hardcover Book
USD 249.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Purchases are for personal use only

Institutional subscriptions

Similar content being viewed by others

References

  • Aguado R, O'Dogherty L, Rey J, Vera JA (1991) Turbiditas calcáreas del Cretácico al Norte de Vélez Blanco (Zona Subbética): Bioestratigrafía y génesis. Rev Soc Geol España, 4: 271–304

    Google Scholar 

  • Aires-Barros L (1979) Actividade ígnea pós-paleozóica no continente português (elementos para uma síntese crítica). Ciências da Terra 5: 175–211

    Google Scholar 

  • Ait Brahim L, Chotin P, Hinaj S, Abdelouafi A, El Adraoui A, Nakcha C, Dhont D, Charroud M, Sossey Alaoui, F, Amrhar M, Bouaza A, Tabyaoui H, Chaouni A (2002) Paleostress evolution in the Moroccan African margin from Triassic to Present. Tectonophysics, 357, 187–205. http://dx.doi.org/10.1016/S0040-1951(02)00368-2

  • Albarède F, Michard-Vitrac A (1978) Age and significance of the north-Pyrenean metamorphism. Earth and Planetary Science Letters, 40: 327–332

    Google Scholar 

  • Alonso A, Floquet M, Mas R, Meléndez A (1983) Evolution paléogéographique des plates-formes de la Meseta nord-castillane et de la Cordillère Ibérique (Espagne) au Sénonien. Géologie Méditerranéenne, X, 3-4, 361–367

    Google Scholar 

  • Alonso A, Floquet M, Mas R, Meléndez A, Meléndez N, Salomón J Vadot JP (1987) Modalités de la régression marine sur le détroit ibérique (Espagne) à la fin du Cretacé. Mémoires

    Google Scholar 

  • Alonso A, Floquet M, Mas R, Meléndez, A (1989) Origin and evolution of an epeiric carbonate platform. Upper Cretaceous. Spain. In: XII Congreso Español de Sedimentología, Robles S, Garcia-Mondejar J, Garrote A. (eds), 21–31

    Google Scholar 

  • Alonso A (1981) El Cretácico de la Provincia de Segovia (borde norte del Sistema Central). Seminarios de Estratigrafía, série monografías, 7, 271 p

    Google Scholar 

  • Alonso A, Floquet M, Mas R, Meléndez A (1993) Late Cretaceous Carbonate Platforms, Origin and Evolution, Iberian Range, Spain. In: Cretaceous Carbonate Platforms, Simó JAT, Scott RW, Masse JP (eds), American Association of Petroleum Geologists Memoir, 56: 297–313

    Google Scholar 

  • Alves TM, Gawthorpe RL, Hunt DW, Monteiro JH (2003) Post-Jurassic tectono-sedimentary evolution of the Northern Lusitanian Basin (Western Iberian margin). Basin Research 15: 227–250

    Google Scholar 

  • Alves TM, Moita C, Cunha T, Ullnaess M, Myklebust R, Monteiro JH, Manuppella G (2009) Diachronous evolution of Late Jurassic-Cretaceous continental rifting in the northeast Atlantic (West Iberian Margin). Tectonics 28: 1–32

    Google Scholar 

  • Amiot M (1982) El Cretácico superior de la Región Navarro-Cantabra. In: El Cretácico de España, Universidad Complutense Madrid, 88–111

    Google Scholar 

  • Amiot M, Floquet M, Mathey B (1982) Plate-forme nord-castillane, bassin navarro-cantabre, zone marine profonde: éléments de la marge ibéro-cantabrique au Crétacé supérieur. Géologie Méditerranéenne, IX, 3: 207–210

    Google Scholar 

  • Amiot A, Floquet M, Mathey B (1983) Relations entre les trois domaines de sédimentation du Crétacé supérieur. In: Vue sur le Crétacé basco-cantabrique et nord-ibérique. Une marge et son arrière-pays, ses environnements sédimentaires. Mémoires Géologiques de l’Université de Dijon, 9: 169–175

    Google Scholar 

  • Amédro F, Berthou PY, Lauverjat J (1980) Nouvelles preuves de l’apparition au Cénomanien supérieur des premiers Vascoceras dans la série type de la basse vallée du Rio Mondego (Beira Litoral, Portugal). Boletim da Sociedade Geológica de Portugal 22: 153–162

    Google Scholar 

  • Antunes MT (1979) Ensaio de síntese crítica acerca do Cretácico terminal e do Paleocénico de Portugal. Ciências da Terra 5: 145–174

    Google Scholar 

  • Antunes MT, Broin F (1988) Le Crétacé Terminal de Beira Litoral, Portugal, remarques stratigraphiques et écologiques, étude complémentaire de Rosasia soutoi (Chelonii, Bothremydidae). Ciências da Terra 9: 153–200

    Google Scholar 

  • Antunes MT, Mateus O (2003) Dinosaurs of Portugal. Comptes Rendus Palevol 2 (1): 77–95

    Google Scholar 

  • Antunes MT, Pais J (1978) Notas sobre os depósitos de Taveiro, estratigrafia, paleontologia, idade, paleoecologia. Ciências da Terra 4: 109–128

    Google Scholar 

  • Aranburu A (1998) El Aptiense - Albiense de Trucíos - Güeñes (oeste de Bizkaia). Tesis Doctoral de la Universidad del País Vasco, 606 p

    Google Scholar 

  • Aranburu A, Fernández-Mendiola PA, García-Mondéjar J (1992) Contrasting styles of paleokarst infill in a block-faulted carbonate ramp (lower Albian, Trucios, N. Spain). Geogaceta, 11: 42–44

    Google Scholar 

  • Arbués P (1987) Projecte de cartografia geològica dels materials del Grup Areny. Institut Cartogràfic de Catalunya

    Google Scholar 

  • Arbués P, Pi E, Berástegui X (1996) Relaciones entre la evolución sedimentaria del Grupo de Arén y el cabalgamiento de Bóixols (Campaniense terminal-Maastrichtiense del Pirineo meridional central), Geogaceta, 20 (2): 446–449

    Google Scholar 

  • Ardèvol Ll, Klimowitz J, Malagón J, Nagtegaal PJC (2000) Depositional sequence response to foreland deformation in the Upper Cretaceous of the Southern Pyrenees, Spain. AAPG Bulletin, 84 (4): 566–587

    Google Scholar 

  • Arnaiz I, Robles S, Pujalte V (1991) Correlación entre registros de sondeos y series de superficie del Aptiense - Albiense continental del extremo SW de la Cuenca Vascocantábrica y su aplicación a la identificación de zonas lignitíferas. Geogaceta, 10: 65–68

    Google Scholar 

  • Ashauer H (1934) Die östliche endigung der Pyrenäen. Abh. der Ges. der Wiss. zu Göttingen

    Google Scholar 

  • Astibia H, Corral JC, Murelaga X, Orue-Etxebarria X, Pereda Suberbiola X, coords (1999) Geology and palaeontology of the Upper Cretaceous vertebrate-bearing beds of the Laño quarry (Basque-Cantabrian Region, Iberian Peninsula). Estudios Museo de Ciencias Naturales de Alava, 14 (Número Especial 1): 1–380

    Google Scholar 

  • Azambre B, Rossy M (1976) Le magmatisme alcalin d’âge crétacé dans les Pyrénées occidentales et l’arc basque; ses relations avec le métamorphisme et la tectonique. Bulletin de la Société Géologique de France, 18: 1725–1728

    Google Scholar 

  • Azéma J, Bourrouilh R, Champetier Y, Fourcade E, Rangheard Y (1974) Rapports stratigraphiques et structuraux entre la Chaîne ibérique, les Cordillères bétiques et les Baléares. Bulletin de la Société Géologique de France 7 (XVI): 140–160

    Google Scholar 

  • Azéma J, Chabrier G, Chauve P, Fourcade E (1979) Nouvelles données stratigraphiques sur le Jurassique et le Crétacé du Nord-Ouest d´Ibiza (Baléares, Espagne). Geologica Romana 18: 1–21

    Google Scholar 

  • Azéma J, Foucault A, Fourcade E, García-Hernández M, González-Donoso JM, Linares A, Linares D, López-Garrido, AC, Rivas P, Vera JA (1979) Las microfacies del Jurásico y Cretácico de las Zonas Externas de las Cordilleras Béticas. Secretariado de Publicaciones de la Universidad de Granada, Granada, 83 p

    Google Scholar 

  • Babinot JF, Moissenet E (1985) Iberocypris, un nouveau genre d’ostracode du Maastrichtien continental d’Espagne. Revue de Micropaléontologie, 24 (4): 231–238

    Google Scholar 

  • Baceta JI, Pujalte V, Serra-Kiel J, Robador A, Orue-Etxebarria X (2004) El Maastrichtiense final, Paleoceno e Ilerdiense inferior de la Cordillera Pirenaica. In: Vera JA (ed), Geología de España. Sociedad Geológica de España-Instituto Geológico y Minero de España, Madrid, pp 308–313

    Google Scholar 

  • Badillo JM, García-Mondéjar J Pujalte V (1983) Analisis del “Flysch Negro” (Albiense sup.-Cenomaniense inf.) en la Bahia de Arminza, Vizcaya. Comunicaciones X° Congreso Nacional de Geológia, 46–49

    Google Scholar 

  • Badillo JM, García-Mondéjar J, Pujalte V (1984) An example of turbidite retrogradational sequence: the “Black Flysch” (U. Albian—L. Cenomanian) of N. Spain. In: 5th European Regional Meeting of the International Association of Sedimentologists, 38–39

    Google Scholar 

  • Badillo-Larrieta T, García-Garmilla F (1985) A tectonosedimentary episode in the “Black Flysch” of Basque-Cantabric basin (Northern Spain). In: 6th European Regional Meeting of the International Association of Sedimentologists, Poster abstracts, 500–503

    Google Scholar 

  • Baena J, Jerez L (1982) Síntesis para un ensayo paleogeográfico entre la Meseta y la Zona Bética (s.s.). Colección Informe, IGME, Madrid, 256 p

    Google Scholar 

  • Barbosa BP (1981) Carta Geológica de Portugal, escala 1.50 000. Notícia explicativa da folha 16C—Vagos. Serviços Geológicos de Portugal, Lisboa, 60 p

    Google Scholar 

  • Barbosa BP, Soares AF, Rocha RB, Manuppella G, Henriques MH (1988) Carta Geológica de Portugal, escala 1.50 000. Notícia explicativa da folha 19A—Cantanhede. Serviços Geológicos de Portugal, Lisboa, 46 p

    Google Scholar 

  • Bardet N, Corral JC, Pereda Suberbiola X (1997) Les mosasaures (Squamata) du Crétacé supérieur du Bassin Basco-Cantabrique. Geobios, 20: 19–26

    Google Scholar 

  • Barnett‐Moore N, Hosseinpour M, Maus S (2016) Assessing discrepancies between previous plate kinematic models of Mesozoic Iberia and their constraints. Tectonics, 35(8): 1843–1862. https://doi.org/10.1002/2015TC004019

  • Barroso-Barcenilla F (2006) Cefalópodos del Cenomaniense superior y del Turoniense inferior en el Surco Ibérico, España. Ph.D. thesis. Madrid, Universidad Complutense de Madrid, unpublished, 626 pp

    Google Scholar 

  • Barroso-Barcenilla F (2007) Revision and new data of the ammonite family Acanthoceratidae de Grossouvre, 1894, from the lower Turonian of the Iberian Trough, Spain. Palaeontographica, Abteilung A 280 (4–6), 123–163

    Google Scholar 

  • Barroso-Barcenilla F, Goy A (2007) Revision and new data of the ammonite family Pseudotissotiidae in the Iberian Trough, Spain. Geobios, 40: 455–487

    Google Scholar 

  • Barroso-Barcenilla F, Goy A, Segura M (2009a) Ammonite zonation of the upper Cenomanian and lower Turonian in the Iberian Trough, Spain. Newsletters on Stratigraphy, 43: 139–164

    Google Scholar 

  • Barroso-Barcenilla F, Cambra-Moo O, Escaso F, Ortega F, Pascual A, Pérez-García A, Rodríguez-Lázaro J, Sanz JL, Segura M Torices A (2009b) New and exceptional discovery in the Upper Cretaceous of the Iberian Peninsula: the palaeontological site of “Lo Hueco”, Cuenca, Spain. Cretaceous Research, 30: 1268–1278

    Google Scholar 

  • Barroso-Barcenilla F, Callapez PM, Ferreira Soares A, Segura M (2011a) Cephalopod assemblages and depositional sequences in the upper Cenomanian and lower Turonian of the Iberian Peninsula (Spain and Portugal). Journal of Iberian Geology, 37: 9–28

    Google Scholar 

  • Barroso-Barcenilla F, Pascual A, Peyrot D, Rodríguez-Lázaro J (2011b) Integrated biostratigraphy and chemostratigraphy of the upper Cenomanian and lower Turonian succession in Puentedey, Iberian Trough, Spain. Proceedings of the Geologists’ Association, 122: 67–81

    Google Scholar 

  • Barroso-Barcenilla F, Callapez PM, Segura M (2013) Revision and new data on the Coniacian ammonite genus Hemitissotia in the Iberian Peninsula (Spain and Portugal). Paläontologische Zeitschrift 87: 201–217

    Google Scholar 

  • Barroso-Barcenilla F, Brandão JM, Callapez PM, Santos VF (2015) Rediscovery of the holotypes of the Cenomanian (Upper Cretaceous) ammonites Vascoceras gamai Choffat, 1898, and Vascoceras barcoicense (Choffat, 1898). Cretaceous Research 56, 647–650

    Google Scholar 

  • Barroso-Barcenilla F Berrocal-Casero M Callapez PM, Carenas, B, García Joral F, García-Hidalgo JF, Gil-Gil J, Goy A, Santos VF, Segura M, Sevilla P (2016) La sección Cenomaniense—Turoniense de Tamajón (Guadalajara, España): Contexto geológico y contenido paleontológico. Cuadernos del Museo Geominero 20: 39–45

    Google Scholar 

  • Bengtson P (1977) Mid-Cretaceous Events. Lethaia project presentations. Lethaia 10, 58

    Google Scholar 

  • Berreteaga A, Poyato FJ, Pereda Suberbiola X (2011) A new Actinopterygian fauna from the latest Cretaceous of Quintanilla la Ojada (Burgos, Spain). Geodiversitas, 33 (2): 285–301

    Google Scholar 

  • Berreteaga A (2008) Estudio estratigráfico, sedimentológico y paleontológico de los yacimientos con fósiles de vertebrados del Cretácico final de la Región Vasco-Cantábrica. Tesis Doctoral Universidad del País Vasco, 410 p

    Google Scholar 

  • Berreteaga A, Pereda Suberbiola X, Floquet M, Olivares M, Etxebarria N, Iriarte E, Badiola A, Elorza JJ, Astibia H (2008) Datos sedimentológicos y tafonómicos de enclaves finicretácicos con fósiles de vertebrados de la Formación Sobrepeña (Burgos, Región Vasco-Cantábrica) Geotemas. 10: 1277–1280

    Google Scholar 

  • Berthou PY (1968a) Le Cénomanien entre le Tage et la Serra de Sintra, Portugal. Comptes Rendus des Séances de l’Académie des Sciences, Série D 267, 2064–2067

    Google Scholar 

  • Berthou PY (1968b) De l’âge cénomanien des calcaires à Rudistes de la région de Lisbonne, Portugal. Comptes Rendus des Séances de l’Académie des Sciences, Série D 267: 2069–2072

    Google Scholar 

  • Berthou PY (1973) Le Cénomanien de l’Estrémadure portugaise. Memórias dos Serviços Geológicos de Portugal 23: 1–169

    Google Scholar 

  • Berthou PY (1978) La transgression cénomanienne dans le Bassin Occidental Portugais. Géologie Méditerranéenne 5: 31–38

    Google Scholar 

  • Berthou PY (1984a) Répartition stratigraphique actualisée des principaux foraminifères benthiques du Crétacé moyen et supérieur du Bassin Occidental Portugais. Benthos 83: 45–54

    Google Scholar 

  • Berthou PY (1984b) Résumé synthétique de la stratigraphie et de la paléogéographie du Crétacé moyen et supérieur du bassin occidental portugais. Geonovas 7: 99–120

    Google Scholar 

  • Berthou PY (1984c) Albian-Turonian stage boundaries and subdivisions in the Western Portuguese Basin, with special emphasis on the Cenomanian-Turonian boundary in the Ammonite Facies and Rudist Facies. Bulletin of the Geological Society of Denmark 33: 41–45

    Google Scholar 

  • Berthou PY (1984d) Zonation par les Ammonites du Cénomanien supérieur et du Turonien inférieur du Bassin Occidental Portugais. Acta 1ro Congreso Español de Geología 1: 13–26

    Google Scholar 

  • Berthou PY, Lauverjat J (1974) La limite Cénomano-Turonien. Essai de corrélation entre la série Portugaise à Vascoceras et les séries de l’Europe du Sud-Ouest et de l’Afrique du Nord. Comptes Rendus de l’Académie des Sciences 278: 2605–2608

    Google Scholar 

  • Berthou PY, Lauverjat J (1975) Le Cénomano-Turonien à Vascocératidés dans sa région type (embouchure du Rio Mondego, Beira Litoral, Portugal), corrélations avec le stratotype du Mans et d’autres séries téthysiennes. Newsletters on Stratigraphy 4: 96–118

    Google Scholar 

  • Berthou PY, Lauverjat J (1976) La limite Cénomano-Turonien dans les principaux faciès du bassin occidental Portugais. Comptes Rendus de l’Académie des Sciences 282: 2143–2146

    Google Scholar 

  • Berthou PY, Lauverjat J (1979) Essai de synthèse paléogéographique du Bassin Occidental Portugais au cours du Crétacé supérieur. Ciências da Terra 5: 121–144

    Google Scholar 

  • Berthou PY, Philip J (1973) La limite Cénomanien-Turonien dans les formations récifales du domaine mésogéen. Comptes Rendus sommaires des Séances de la Société Géologique de France 6: 238–239

    Google Scholar 

  • Berthou PY, Schroeder R (1979) Les Orbitolinidae et Alveolinidae de l’Albien supérieur-Cénomanien inférieur dans le Sud-Ouest de la région de Lisbonne (Portugal). Cahiers de Micropaléontologie 3: 51–103

    Google Scholar 

  • Berthou PY, Termier G (1973) Les Nerinées du Cénomanien de l’Estrémadure portugaise. Comunicações dos Serviços Geológicos de Portugal 56: 73–81

    Google Scholar 

  • Berthou PY, Brower JC, Reyment RA (1975) Morphometrical study of Choffat’s vascoceratids from Portugal. Bulletin of the Geological Institutions of the University of Uppsala, New Series 6: 73–83

    Google Scholar 

  • Berthou PY, Soares AF, Lauverjat J (1979) Portugal, in Mid Cretaceous Events Iberian Field Conference 77, Guide I. Cuadernos de Geologia Ibérica 5: 31–124

    Google Scholar 

  • Berthou PY, Chancellor G, Lauverjat J (1985) Revision of the Cenomanian-Turonian Ammonite Vascoceras Choffat, 1898, from Portugal. Comunicações dos Serviços Geológicos de Portugal 71: 55–79

    Google Scholar 

  • Bilotte M (1985) Le Crétacé supérieur des plates-formes est-pyrénéennes. Thèse de Doctorat d’Etat, Université Paul Sabatier Toulouse, 626 p

    Google Scholar 

  • Blumenthal MM (1927) Versuch ciner tektonischen Gliederung der betischen Cordilleren von Central-und Südwest (Andalousien). Eclogae Geologicae Helvetiae, 20: 487–532

    Google Scholar 

  • Boix-Martínez C (2007) Los foraminíferos rotálidos del Cretácico superior de la Cuenca Pirenaica. (PhD dissertation), 139 p, Univ. Autònoma Barcelona

    Google Scholar 

  • Brinkmann R, Logters H (1967) Die diapire der spanischen Westpyrenäen und ibres Vorlandes. Beihefte zum Geologischen Jahrbuch, 66: 1–20

    Google Scholar 

  • Busnardo R (1960) Aperçu sur le Prébétique de la région de Jaén (Andalousie, Espagne). Bull Soc Geol France, 7 (II): 324–329

    Google Scholar 

  • Cabanis B, Le Fur-Balquet S (1990) Le magmatisme Crétacé des Pyrénées, apport de la géochimie des éléments en traces, conséquences chronologiques et géodynamiques. Bulletin des Centres de Recherches Exploration-Production Elf-Aquitaine, 14: 155–184

    Google Scholar 

  • Cabral MC, Colin JP, Azerêdo AC (2008) Taxonomy and palaeoecology of new brackish ostracod species from the middle Cenomanian of Lousã, Lisbon region, Portugal. Palaeogeography, Palaeoclimatology, Palaeoecology 264: 250–262

    Google Scholar 

  • Callapez PM (1992) Estudo paleoecológico dos Calcários de Trouxemil (Cenomaniano-Turoniano) na região entre a Mealhada e Condeixa-a-Nova (Portugal Central). Unpublished MsC Thesis, University of Coimbra, Coimbra, 272 p

    Google Scholar 

  • Callapez PM (1998) Estratigrafia e Paleobiologia do Cenomaniano-Turoniano. O significado do eixo da Nazaré-Leiria-Pombal. Unpublished Ph.D. Thesis, University of Coimbra, Coimbra, 491p

    Google Scholar 

  • Callapez PM (1999a) The marine lower Turonian of West Central Portugal. European Palaeontological Association, Workshop of Lisbon, Abstract volume, 83–87

    Google Scholar 

  • Callapez PM (1999b) The Cenomanian-Turonian of the Western Portuguese Basin. Stratigraphy and Palaeobiology of the Central and Northern sectors. European Paleontological Association Workshop, Field Trip B guidebook, Lisbon, 65 p

    Google Scholar 

  • Callapez PM (2001) Upper Cenomanian and lower Turonian ammonite biostratigraphy of West-Central Portugal. Bulletin de la Société d’études de Sciences Naturelles d’Elbeuf 87: 63–68

    Google Scholar 

  • Callapez PM (2003a) The Cenomanian-Turonian transition in West Central Portugal, ammonites and biostratigraphy. Ciências da Terra 15: 53–70

    Google Scholar 

  • Callapez PM (2003b) Notes on the Cretaceous invertebrate faunas of Portugal—I, A new species of Anadromus (Mollusca, Gastropoda) from the Campanian-Maastrichtian of Taveiro (Coimbra, West Central Portugal). Ciências da Terra 15: 71–76

    Google Scholar 

  • Callapez PM (2004) The Cenomanian-Turonian central West Portuguese carbonate platform. In: Dinis JL, Cunha PP (eds), Cretaceous and Cenozoic events in West Iberia margins. 23rd IAS Meeting of Sedimentology, Field-trip 2 guidebook, Coimbra, 39–51

    Google Scholar 

  • Callapez PM (2008a) Palaeobiogeographic evolution and marine faunas of the Mid-Cretaceous Western Portuguese Carbonate Platform. Thalassas 24: 29–52

    Google Scholar 

  • Callapez PM (2008b) Associações fósseis bentónicas do Cenomaniano-turoniano da Figueira da Foz, um tributo aos estudos de Paleoecologia de António Ferreira Soares. In: Callapez PM, Rocha RB, Cunha L, Marques JF, Dinis PM (eds), A Terra Conflitos e Ordem. Livro de Homenagem ao Professor António Ferreira Soares, Museu Mineralógico e Geológico, Universidade de Coimbra, Coimbra, 453–466

    Google Scholar 

  • Callapez PM, Soares AF (1991) O género Tylostoma Sharpe, 1849 (Mollusca, Gastropoda) no Cenomaniano de Portugal. Memórias e Notícias 111: 169–182

    Google Scholar 

  • Callapez PM, Soares AF (1993) A família Pectinidae (Mollusca, Bivalvia) no Cenomaniano-Turoniano do sector Norte da Orla Meso-Cenozóica Ocidental. Memórias e Notícias 115: 137–154

    Google Scholar 

  • Callapez PM, Soares AF (2001) Fósseis de Portugal, Amonóides do Cretácico Superior (Cenomaniano-Turoniano). Museu Mineralógico e Geológico, Universidade de Coimbra, Coimbra, 106 p

    Google Scholar 

  • Callapez PM, Dinis JL, Soares AF, Marques JF (2010) O Cretácico Superior da Orla Meso-Cenozóica Ocidental de Portugal (Cenomaniano a Campaniano inferior). In: Cotelo Neiva JM, Ribeiro A, Mendes Victor L, Noronha F, Ramalho MM (Eds). Ciências Geológicas—Ensino investigação e sua história, I—Geologia Clássica, III—Paleontologia e Estratigrafia (Coord. Antunes, MT.). Associação Portuguesa de Geólogos e Sociedade Geológica de Portugal, Lisboa, 331–340

    Google Scholar 

  • Callapez PM, Brandão JM, Santos VF, Gomes CR (2013) Between history and contemporaneous geology, revisiting a “classical” (geo) site from the Upper Cretaceous of Portugal. Revista de la Sociedad Geológica de España 26 (2): 5–12

    Google Scholar 

  • Callapez PM, Barroso-Barcenilla F, Cambra-Moo O, Ortega F, Pérez-García A, Segura M, Torices A (2014) Fossil assemblages and palaeoenvironments in the Cenomanian vertebrate site of Nazaré (West Central Portugal). Neues Jahrbuch für Geologie und Paläontologie 273 (2): 179–195

    Google Scholar 

  • Callapez PM, Gil Gil J, Garcia-Hidalgo J, Segura M, Barroso-Barcenilla F, Carenas B (2015) The Tethyan oyster Pycnodonte (Costeina) costei (Coquand, 1869) in the Coniacian (Upper Cretaceous) of the Iberian Basin (Spain), Taxonomic, palaeoecological and palaeobiogeographical implications. Palaeogeography, Palaeoclimatology, Palaeoecology 435: 105–117

    Google Scholar 

  • Callapez PM, Barroso-Barcenilla F, Soares AF, Segura M, Santos VF (2017) On the co-occurrence of Rubroceras and Vascoceras (Ammonoidea, Vascoceratidae) in the upper Cenomanian of the West Portuguese Carbonate Platform. Cretaceous Research (in press)

    Google Scholar 

  • Calonge A (1989) Bioestratigrafía del Cenomaniense de la Cordillera Ibérica por Foraminíferos bentónicos. Tesis Doctoral, Universidad Complutense de Madrid, 558 p

    Google Scholar 

  • Calonge A (1994) Los alveolínidos cretácicos de la Cordillera Ibérica (España). Revista española de micropaleontología, 26: 69–88

    Google Scholar 

  • Calonge A, Caus E, Bernaus JM, Aguilar M (2002) Praealveolina (Foraminifera) species: a tool to date Cenomanian platform sediments. Microplaeontology, 48: 53–66, text-figures 1–4, plates 1–7, table 1

    Google Scholar 

  • Calonge A, Caus E, López-Carrillo D (2003) Biostratigraphy of the shallow-water Cenomanian deposits from the Iberian Ranges (Spain). AAPG Search and Discovery Article #90017©2003 AAPG International Conference, Barcelona, Spain, September 21–24, 2003

    Google Scholar 

  • Canudo JI, Keller G, Molina E (1991) Cretaceous-Tertiary boundary extinction pattern and faunal turnover at Agost and Caravaca, SE Spain. Marine Micropaleontology, 17: 319–341

    Google Scholar 

  • Canérot J, Cugny P, Pardo G, Salas R, Villena J (1982) Ibérica Central—Maestrazgo. In: El Cretácico de España, Universidad Complutense Madrid, p 273–344

    Google Scholar 

  • Cappetta H, Corral C (1999) Upper Maastrichtian selachians from the Condado de Treviño (Basque-Cantabrian region, Iberian Peninsula). En: Geology and palaeontology of the Upper Cretaceous vertebrate-bearing beds of the Laño quarry (Basque-Cantabrian Region, Iberian Peninsula (H Astibia, JC Corral, X Murelaga, X Orue-Etxebarria, X Pereda-Suberbiola, Eds). Estudios del Museo de Ciencias Naturales de Álava, 14 (Número Especial 1): 339–372

    Google Scholar 

  • Carrera N, Muñoz JA, Rivas G, Arbués P, Mencos J (2009) Geologia del Mesozoic i Geologia estructural, in Map 252-1-2 (65–22), Tremp scale 1:25000, Institut Cartogràfic de Catalunya (ICC), Servei Geològic de Catalunya (IGC), Barcelona

    Google Scholar 

  • Castañares LM, Robles S (2004) El vulcanismo del Albiense—Santoniense en la Cuenca Vasco-Cantábrica. In: Geología de España, Vera JA (ed), Sociedad Geológica de España, Instituto Geológico y Minero de España, 306–308

    Google Scholar 

  • Castañares LM, Robles S, Vicente Bravo JC (1997) Distribución estratigráfica de los episodios volcánicos submarinos del Albiense-Santoniense de la Cuenca Vasca (sector Gernika-Plentzia, Bizkaia). Geogaceta, 22: 43–46

    Google Scholar 

  • Castañares LM, Robles S, Gimeno D, Vicente Bravo JC (2001) The submarine volcanic system of the Errigoiti Formation (Albian—Santonian of the Basque-Cantabrian basin, northern Spain): stratigraphic framework, facies and sequences. Journal of Sedimentary Research, 71: 318–333

    Google Scholar 

  • Castro JM (1998) Las plataformas del Valanginiense superior al Albiense superior en el Prebético de Alicante. PhD. Thesis, Universidad de Granada, 452 p

    Google Scholar 

  • Caus E, Cornella A (1983) Macroforaminifères du Crétacé supérieur du bassin sud-pyrénéen, Géologie Méditerranéenne, 10, (3–4), 137–142

    Google Scholar 

  • Caus E, Gómez-Garrido A (1989) Upper Cretaceous biostratigraphy of the south-central Pyrenees (Leida, Spain), Geodinamica Acta, 3: 221–228

    Google Scholar 

  • Caus E, Gómez-Garrido A, Simó A, Soriano K (1993) Cenomanian-Turonian platform to basin integrated stratigraphy in the South Pyrenees (Spain). Cretaceous Research 14: 531–555

    Google Scholar 

  • Caus E, Teixell A, Bernaus JM (1997) Depositional model of a Cenomanian-Turonian extensional basin (Sopeira Basin, NE Spain): interplay between tectonics, eustasy and biological productivity. Palaeogeography, Palaeoclimatology, Palaeoecology, 129, 1–2: 23–36

    Google Scholar 

  • Caus E, Bernaus JM, Calonge E, Martín-Chivelet J (2009) Mid Cenomanian separation of Atlantic and Tethyan domains in Iberia by a landbridge: the origin of larger foraminifera provinces?, Palaeogeography, Palaeoclimatology, Palaeoecology, 283 (3–4), 172–181. doi:http://dx.doi.org/10.1016/j.palaeo.2009.09.019

  • Chacón B (2002) Las sucesiones hemipelágicas del final del Cretácico e inicio del Paleógeno en el SE de la Placa Ibérica: Estratifrafía de eventos y evolución de cuenca. Tesis Doctoral, Univ. Complutense. Madrid, 439 p

    Google Scholar 

  • Chacón B, Martín-Chivelet J (2001) Implicaciones tectosedimentarias de la discontinuidad estratigráfica del Maastrichtiense medio en Aspe (Prebético de Alicante). Rev. de la Sociedad Geológica de España, 14 (1–2), 123–133

    Google Scholar 

  • Chacón B, Martín Chivelet J (2003) Discontinuidades estratigráficas regionales en las series hemipelágicas finicretácicas del Prebético (sector Jumilla—Callosa—Aspe). Journal of Iberian Geology, 29: 89–108

    Google Scholar 

  • Chacón B, Martín-Chivelet J (2005a) Subdivisión Litoestratigráfica de las series hemipelágicas de edad Coniaciense—Thanetiense en el Prebético Oriental (SE de España). Rev. Sociedad Geológica de España, 18 (1–2), 3–20

    Google Scholar 

  • Chacón B, Martín-Chivelet J (2005b) Major palaeoenvironmental changes in the Campanian to Palaeocene sequence of Caravaca (Subbetic zone). Journal of Iberian Geology, 31: 299–310

    Google Scholar 

  • Chacón B, Martín-Chivelet J (2008) Stratigraphy of Palaeocene phosphate pelagic stromatolites (Prebetic Zone, SE Spain). Facies, 54: 361–376. doi:http://dx.doi.org/10.1007/s10347-008-0136-6

  • Chacón B, Martín-Chivelet J, Graefe KU (2004) Latest Santonian to latest Maastrichtian planktic foraminifera and biostratigraphy of the hemipelagic series of the Prebetic (Murcia and Alicante provinces, SE Spain). Cretaceous Research, 25, 585–601(2004). doi:http://dx.doi.org/10.1016/j.cretres.2004.05.003

  • Chancellor G, Kennedy WJ, Hancock J (1994) Turonian ammonite faunas from central Tunisia. Special Papers on Palaeontology 50: 1–118

    Google Scholar 

  • Choffat PL (1885) Recueil de monographies stratigraphiques sur le Système Crétacique du Portugal, Première étude, Contrée de sintra, de Bellas et de Lisbonne. Section des Travaux Géologiques du Portugal, Lisbonne, 68 p

    Google Scholar 

  • Choffat PL (1886) Recueil d’études paléontologiques sur la Faune Crétacique du Portugal, I—Espèces nouvelles ou peu connues. Section des Travaux Géologiques du Portugal, Lisbonne, 40 p

    Google Scholar 

  • Choffat PL (1891) Note sur le Crétacique des environs de Torres Vedras, de Peniche et de Cercal. Communications de la Commission des Services Géologiques du Portugal 2: 171–215

    Google Scholar 

  • Choffat PL (1894) Notice stratigraphique sur les gisements de végétaux fossiles dans le Mésozoïque du Portugal. In: Saporta M, Flore fossile du Portugal, Lisbonne, Direction des Services Géologiques du Portugal, 229–279

    Google Scholar 

  • Choffat PL (1896) Coup d’œil sur les mers mésozoïques du Portugal. Vierteljahrsschrift der Naturforschenden Gesellschaft in Zürich 41, 294–317

    Google Scholar 

  • Choffat PL (1897a) Sur le Crétacique de la région du Mondego. Comptes Rendus de l’Académie des Sciences 124, 422–424

    Google Scholar 

  • Choffat PL (1897b) Parallélisme entre le Crétacique du Mondego et celui de Lisbonne. Comptes Rendus de l’Académie des Sciences 124: 519–521

    Google Scholar 

  • Choffat PL (1897c) Faciès Ammonitique et Faciès Récifal du Turonien Portugais. Bulletin de la Société Géologique de France, Série 3 25, 470–478

    Google Scholar 

  • Choffat PL (1898) Recueil d’études paléontologiques sur la Faune Crétacique du Portugal, II—Les Ammonées du Bellasien, des Couches à Neolobites vibrayeanus, du Turonien et du Sénonien. Section des Travaux Géologiques du Portugal, Lisbonne, 45 p

    Google Scholar 

  • Choffat PL (1900) Recueil de monographies stratigraphiques sur le Système Crétacique du Portugal, Deuxième étude, Le Crétacé supérieur au Nord du Tage. Direction des Services Géologiques du Portugal, Lisbonne, 287 p

    Google Scholar 

  • Choffat PL (1901–1902) Recueil d’études paléontologiques sur la Faune Crétacique du Portugal, III-IV—Mollusques du Sénonien à faciès fluviomarin, Espèces nouvelles ou peu connues. Direction des Services Géologiques du Portugal, Lisbonne, 84 p

    Google Scholar 

  • Chotin P, Ait Brahim L, Tabyaoui H (2000) The Southern Tethyan margin in Northeastern Morocco, sedimentary characteristics and tectonic control. In: Crasquin-Soleau S, Barrier E (Eds), Peri-Tethys Memoir 5: New Data on Peri-Tethyan Sedimentary Basins, Mémoires du Museum National d’Histoire Naturelle, Paris, 182: 107–128

    Google Scholar 

  • Choukroune P (1976) Structure et évolution tectonique de la Zone Nord-Pyrénéenne. Analyse de la déformation dans une portion de la chaîne à schistosité subverticale. Mémoires de la Société Géologique de France, 55, 127, 116 p

    Google Scholar 

  • Choukroune P (1992) Tectonic evolution of the Pyrenees. Annual Revues of Earth and Planetary Sciences, 20: 143–158

    Google Scholar 

  • Cloetingh S (1988) Intraplate stresses: a new element in basin analysis. In: Kleinspehn KL, Paola C (Eds), New Perspectives in Basin Analysis. Springer-Verlag, New York, pp 205–230

    Google Scholar 

  • Cobban W, Hook S, Kennedy WJ (1989) Upper Cretaceous rocks and ammonite faunas of south-western New Mexico. New Mexico Bureau of Mines and Mineral Resources Memoir 45: 1–137

    Google Scholar 

  • Coimbra R, Azerêdo AC, Cabral MC, Immenhauser A (2016) Palaeoenvironmental analysis of mid-Cretaceous coastal lagoonal deposits (Lusitanian Basin, W. Portugal). Palaeogeography, Palaeoclimatology, Palaeoecology 446: 308–325

    Google Scholar 

  • Comas MC (1978) Sobre la Geología de los Montes Orientales: sedimentación y evolución paleogeográfica desde el Jurásico hasta el Mioceno inferior (Zona Subbética, Andalucía). Ph. D. Thesis, Univ. País Vasco, Bilbao, 323 p

    Google Scholar 

  • Company J, Szentesi Z (2012) Amphibians from the Late Cretaceous Sierra Perenchiza Formation of the Chera Basin, Valencia Province, Spain. Cretaceous Research, 37: 240–245

    Google Scholar 

  • Company J, Pereda Suberbiola X, Ruiz-Omeñaca JI (2009) Nuevos restos fósiles del dinosaurio Lirainosaurus (Sauropoda, Titanosauria) en el Cretácico Superior (Campaniano-Maastrichtiano) de la Península Ibérica. Ameghiniana. 46: 391–405

    Google Scholar 

  • Company J (2017) Unusually thick dinosaur eggshell fragments from the Spanish Late Cretaceous. Historical Biology. August 2017. https://doi.org/10.1080/08912963.2017.1357717

  • Consorti L, Calonge A, Caus E (2016) Pseudorhapydionininae of the Iberian Ranges (Cenomanian, Iberian Peninsula). Spanish Journal of Palaeontology, 31 (2): 271–282

    Google Scholar 

  • Corrochano A, Reis RP, Armenteros I (1998) Um paleocarso no Cretácico Superior do Sítio da Nazaré (Bacia Lusitânica, Portugal Central). Características, controlos e evolução. Livro Guia das excursões do 5º Congresso Nacional de Geologia, Lisboa, 33–38

    Google Scholar 

  • Coruña F, Vilas L, Martín-Chivelet J (2008) Análisis estratigráfico y sedimentológico de la sucesión hemipelágica albiense en la sierra Espartal-Almaens (Jijona, Alicante, Zona Prebética). Geo-Temas, 10: 127–130

    Google Scholar 

  • Coruña F, de Santiago‐Buey C, López‐Andrés S, Martín‐Chivelet J (2016) Caracterización de los filosilicatos de la sucesión hemipelágica de la Serra dels Almaens (Albiense superior, Prebético de Alicante). Geotemas, 16 (1): 125–128

    Google Scholar 

  • Costa JC (1937) O Neocretácico da Beira Litoral. Publicações do Museu e Laboratório Mineralógico e Geológico da Faculdade de Ciências do Porto 5: 1–33

    Google Scholar 

  • Costa JC (1940a) Alveolinídeos do Cenomaniano de Portugal. Publicações do Museu e Laboratório Mineralógico e Geológico da Faculdade de Ciências do Porto 21: 1–21

    Google Scholar 

  • Costa JC (1940b) Um novo quelónio fóssil. Comunicações dos Serviços Geológicos de Portugal 21: 107–125

    Google Scholar 

  • Cotter JCB (1901) Sur les mollusques terrestres de la nappe basaltique de Lisbonne. Comunicações da Direcção Geológica de Portugal 4: 127–146

    Google Scholar 

  • Cremades J, Linares A (1982) Contribucion al conocimiento del Albense superior-Cenomanense del Prebetico de la Provincia de Alicante. Cuadernos Geología Ibérica, 8: 721–738

    Google Scholar 

  • Crosaz R (1976) Le Cénomanien de la région de Vila Nova de Ourém (Portugal). Thèse du 3éme Cycle, Université Pierre et Marie Curie, Paris VI, Paris, 216 p

    Google Scholar 

  • Crosaz-Galletti R (1979) Étude stratigraphique et micropaléontologique du Cénomanien calcaire de la région de Vila Nova de Ourém (Portugal). Comunicações dos Serviços Geológicos de Portugal 65: 47–104

    Google Scholar 

  • Cuenca-Bescós G, Amo O, Barco JL, Canudo JI, Royo-Torres R, Ruiz-Omeñaca JI (1999) Dinosaurios de Aragón. Zubía 17: 235–257

    Google Scholar 

  • Cuevas JL (1992) Estratigrafía del “Garumniense” de la Conca de Tremp. Prepirineo de Lérida. Acta Geologica Hispanica, 27, (1–2), 95–108.

    Google Scholar 

  • Cunha PP (1992) Estratigrafia e sedimentologia dos depósitos do Cretácico Superior e Terciário de Portugal Central, a leste de Coimbra. Unpublished Ph.D. Thesis, University of Coimbra, Coimbra, 262 p

    Google Scholar 

  • Cunha PP, Reis RP (1995) Cretaceous sedimentary and tectonic evolution of the northern sector of the Lusitanian Basin (Portugal). Cretaceous Research 16: 155–170

    Google Scholar 

  • Dalloni M (1910) Etude géologique des Pyrénées de l’Aragon. Ann Fac Sci Marseille, XIX, 744 p

    Google Scholar 

  • Dalloni M (1930) Étude géologique des Pyrénées catalanes. J Carbonel Edit Alger: 1–373

    Google Scholar 

  • De Jong K (1990) Alpine tectonics and rotation pole evolution of Iberia. Tectonophysics, 184: 279–296

    Google Scholar 

  • De Ruig MJ (1992) Tectono-sedimentary evolution of the Prebetic fold belt of Alicante (SE Spain). Ph.D. Thesis, Vrije Universiteit, 207 p

    Google Scholar 

  • De Ruig MJ, Smit J, Geel T, Kooi H (1991) Effects of the Pyrrenean collision on the Paleocene stratigraphic evolution of the southern Iberian margin (southeast Spain). Geol Soc Am Bull, 103: 1504–1512

    Google Scholar 

  • DeCelles P, Giles K (1996) Foreland basin systems. Basin Research, 8: 105–123

    Google Scholar 

  • Debroas EJ (1990) Le flysch noir albo-cénomanien témoin de la structuration albienne à sénonienne de la Zone nord-pyrénéenne en Bigorre (Hautes-Pyrénées, France). Bulletin de la Société Géologique de France, Huitième Série, 6, 2: 273–285

    Google Scholar 

  • Deramond J, Souquet P, Fondecave-Wallez MJ, Specht M (1993) Relationships between thrust tectonics and sequence stratigraphy surfaces in foredeeps: model and examples from the Pyrenees (Cretaceous-Eocene, France, Spain). In: Williams GD, Dobb A (eds) Tectonics and Seismic Stratigraphy. Geological Society, Special Publications London, 71: 193–219

    Google Scholar 

  • Dercourt J, Zonenshain LP, Ricou, L-E, Kazmin VG, Le Pichon X, Knipper AL, Grandjacquet C, Sbortshikov IM, Geyssant J, Lepvrier C, Pechersky DH, Boulin J, Sibuet J-C, Savostin LA, Sorokhtin O, Westphal M, Bazhenov ML, Lauer JP, Biju-Duval B (1986) Geological evolution of the tethys belt from the atlantic to the pamirs since the LIAS. Tectonophysics, 123: 241–315

    Google Scholar 

  • Dercourt J, Gaetani M, Vrielynck B, Barrier E, Biju-Duval B, Brunet MF, Cadet JP, Crasquin-Soleau S, Sandulescu M (2000) Atlas Peri-Tethys, Palaeogeographical maps. Commission de la Carte Géologique du Monde, Paris, 268 p

    Google Scholar 

  • Dinis JL (1999) Estratigrafia e Sedimentologia da Formação da Figueira da Foz—Aptiano a Cenomaniano do sector Norte da Bacia Lusitânica. Unpublished Ph.D. Thesis, University of Coimbra, Coimbra, 381 p

    Google Scholar 

  • Dinis JL (2001) Definição da Formação da Figueira da Foz—Aptiano a Cenomaniano do sector central da margem oeste ibérica. Comunicações do Instituto Geológico e Mineiro 88: 127–160

    Google Scholar 

  • Dinis JL, Rey J, Graciansky PC de (2002) Le Bassin Lusitanien (Portugal) à l’Aptien supérieur-Albien, organisation séquentielle, proposition de corrélations, évolution. Comptes Rendus Géosciences 334: 757–764

    Google Scholar 

  • Dinis JL, Trincão P (1991) Controlos deposicionais e biostratigrafia da base dos “grés belasianos” (Aptiano, Bacia Lusitaniana). Comunicações dos Serviços Geológicos de Portugal 77: 89–102

    Google Scholar 

  • Dinis JL, Trincão P (1995) Recognition and stratigraphical significance of the Aptian unconformity in the Lusitanian Basin, Portugal. Cretaceous Research 16: 171–186

    Google Scholar 

  • Dinis JL, Rey J, Cunha PP, Callapez PM, Reis RP (2008) Stratigraphy and allogenic controls on the western Portugal Cretaceous, an updated synthesis. Cretaceous Research 29: 772–780

    Google Scholar 

  • Dinis PA, Dinis JL, Mendes MM, Rey J, Pais J (2016a) Geochemistry and mineralogy of the Lower Cretaceous of the Lusitanian Basin (western Portugal), deciphering palaeoclimates from weathering indices and integrated vegetational data. Comptes Rendus Geoscience 346: 139–149

    Google Scholar 

  • Dinis PA, Dinis JL, Tassinari C, Carter A, Callapez PM, Morais M (2016b) Detrital zircon geochronology of the Cretaceous succession from the Iberian Atlantic Margin, palaeogeographic implications. International Journal of Earth Sciences (Geological Rundschau) 105: 727–745

    Google Scholar 

  • Domingo L, Barroso-Barcenilla F, Cambra-Moo O (2015) Seasonality and paleoecology of the Late Cretaceous multi-taxa vertebrate assemblage of “Lo Hueco” (central eastern Spain). PLOS ONE. https://doi.org/10.1371/journal.pone.0119968

  • Driscoll NW, Hogg R, Christie-Blick N, Karner GD (1995) Extensional tectonics in the Jeanne d'Arc Basin, offshore Newfoundland: Implications for the timing of break-up between Grand Banks and Iberia. Geological Society London Special Publications 90(1): 1–28. https://doi.org/10.1144/GSL.SP.1995.090.01.01

  • Drzewiecki PA, Simó JA (2000) Tectonic, eustatic and environmental controls on mid-Cretaceous carbonate platform deposition, south-central Pyrenees, Spain. Sedimentology, 47: 471–495. https://doi.org/10.1046/j.1365-3091.2000.00286.x

  • Durand-Delga M, Olivier P (1988) Evolution of the Alboran block margin from Early Mesozoic to Early Miocene time. In: Jacobshagen VH (eds) The Atlas System of Morocco. Lecture Notes in Earth Sciences, vol 15. Springer, Berlin, Heidelberg

    Google Scholar 

  • Díaz de Neira JA, Gil J (2009) Unidades litoestratigráficas del Cretácico de Ibiza (Islas Baleares, España). Boletín de la Real Sociedad Española de Historia Natural (Sección Geológica) 103: 5–21

    Google Scholar 

  • Díaz de Neira JA. y Gil-Gil J (2014) Correlación litoestratigráfica entre las sucesiones mesozoicas de la isla de Ibiza y el Prebético de Alicante. Revista de la Sociedad Geológica de España, 27 (1): 91–109

    Google Scholar 

  • Eichenseer H (1987) Facies geology of late Maestrichtian to Early Eocene coastal to shallow marine sediments, -Tremp-Graus Basin, Northeastern Spain, (PhD dissertation) Univ. Tübingen, Germany, 237p

    Google Scholar 

  • Eichenseer H, Krauss S (1985) The Tremp Formation Maastrichtian-Paleogene and the lower Ager Group Paleogene of the northern flank of the Tremp-Graus Embayment (NE Spain), Abstract, 6th IAS European Regional Meeting, Lleida, 149–151

    Google Scholar 

  • Elser W (1982) Quantitative biofazies-analyse in Maastrich der Südpyrenäen, (Ph.D. dissertation) Univ. Tübingen, Germany, 212 p

    Google Scholar 

  • Engeser T, Reitner J, Schwenkte W, Wiedmann J (1984) Die kretazisch-alttertiäre Tektogenese des Basko-Kantabrischen Beckens (Nordspanien). Zeitschrift der Deutschen Geologischen Gesellschaft, 135: 243–268

    Google Scholar 

  • Fernández-Fernández E, Jabaloy A, González-Lodeiro F (2003) Middle Jurassic to Cretaceous extensional tectonics and sedimentation in the eastern external zone of the Betic Cordillera. In: McCann T, Saintot A (eds) Tracing tectonic deformation using the sedimentary record. Geological Society London, Special Publications, 208: 29–53

    Google Scholar 

  • Fernández-Lozano J, Sokoutis D, Willingshofer E, Cloetingh S, De Vicente G (2011) Cenozoic deformation of Iberia: A model for intraplate mountain building and basin development based on analogue modeling. Tectonics, 30, TC1001. https://doi.org/10.1029/2010tc002719, 2011

  • Fernández-Mendiola PA, García-Mondéjar J (1995) Volcanoclastic sediments in the early Albian Mañaria carbonate platform (northern Spain). Cretaceous Research, 16: 451–463

    Google Scholar 

  • Ferreira OV (1961) Fauna ictiológica do Cretácico de Portugal. Comunicações dos Serviços Geológicos de Portugal 45: 251–278

    Google Scholar 

  • Ferreira MP, Macedo CAR (1979) Actividade magmática durante o Mesozóico: I; achega para a datação K-Ar das rochas filonianas básicas intrusivas na Zona Centro-Ibérica (Portugal). Memórias e Notícias 87: 29–49

    Google Scholar 

  • Feuillée P (1967) Le Cénomanien des Pyrénées Basques aux Asturies. Essai d’analyse stratigraphique. Mémoires de la Société Géologique de France, 46 (3): 343

    Google Scholar 

  • Feuillée P (1983) The Flysch Noir. In: Vue sur le Crétacé basco-cantabrique et nord-ibérique. Une marge et son arrière-pays, ses environnements sédimentaires. Mémoires Géologiques de l’Université de Dijon, 9: 79–81

    Google Scholar 

  • Flinch JF, Casas JM (1996) Inversion of a transfer system into lateral ramps: an example from the South-Central Pyrenees. Geol Rundsch, 85: 372–379

    Google Scholar 

  • Floquet M (1982) Un modèle de comblement de plate-forme interne carbonatée: Santonien supérieur—Campanien des Chaînes Ibériques Nord. Cretaceous Research, 3: 69–81

    Google Scholar 

  • Floquet M (1984) Discontinuités sédimentaires et corrélations: exemples dans le Crétacé supérieur mésogéen et atlantique. Bulletin de la Société géologique de France, 7, XXVI (6): 1211–1221

    Google Scholar 

  • Floquet M (1991) La plate-forme nord-castillane au Crétacé supérieur (Espagne). Arrière-pays ibérique de la marge passive basco-cantabrique. Sédimentation et Vie. Mémoires Géologiques de l’Université de Dijon, 14: 925 p

    Google Scholar 

  • Floquet M, Salomon J, Vadot JP (1994) Uppermost Cretaceous and Paleogene fluvio-lacustrine basins in the northern Iberian Ranges (Spain). In: Global Geological Record of Lake Basins, Gierlowski-Kordesch E, Kelts K (eds), Cambridge University Press, 223–227

    Google Scholar 

  • Floquet M (1998) Outcrop cycle stratigraphy of shallow ramp deposits, the Late Cretaceous series on the Castilian ramp (northern Spain). In: Mesozoic and Cenozoic Sequence Stratigraphy of European Basins, Graciansky PC de, Hardenbol J, Jacquin T, Vail PR (eds), SEPM Special Publication 60: 343–361

    Google Scholar 

  • Floquet M (2004) El Cretácico superior de la Cuenca Vasco-Cantábrica y áreas adyacentes. In: Geología de España, Vera JA (ed), Sociedad Geológica de España, Instituto Geológico y Minero de España, 299–306

    Google Scholar 

  • Floquet M, Mathey B (1984) Evolution sédimentologique, paléogéographique et structurale des marges ibérique et européenne dans les régions basco-cantabrique et nord-ibérique au Crétacé moyen et supérieur. Strata, 1, 1, 129–136, et Travaux du Laboratoire de Stratigraphie et Paléoécologie de Marseille, 129–136

    Google Scholar 

  • Floquet M, Rat P (1975) Un exemple d’interrelation entre socle, paléogéographie et structure dans l’arc pyrénéen basque: la Sierra d’Aralar. Revue de Géographie Physique et de Géologie Dynamique, XVII, 497–512

    Google Scholar 

  • Floquet M, Alonso A, Meléndez A (1982) El Cretácico superior de la Región Cameros—Castilla. In: El Cretácico de España, Universidad Complutense de Madrid, 387–456

    Google Scholar 

  • Floquet M, Salomon J, Vadot JP (1985) Evolution of a continental basin according to carbonate facies, sequences and diagenesis: example in the Late Cretaceous-Early Tertiary of Santo Domingo de Silos (Province of Burgos, Spain). In: Abstracts 6th European Regional Meeting of Sedimentology, International Association of Sedimentologists, ROSSEL et al. (ed), p 566–569

    Google Scholar 

  • Floquet M, Mathey B, Rossé P, Vadot JP (1988) Âge Cénomanien et Turono-Coniacien des Calcaires de Sare (Pays Basque, France—Espagne). Conséquences paléomorphologiques et tectonogénétiques pour les Pyrénées occidentales. Bulletin de la Société Géologique de France, 8, IV, 6: 1021–1027

    Google Scholar 

  • Floquet M, Mathey B, Métais E. Emmanuel L, Babinot JF, Magniez-Jeannin F, Tronchetti G (1996) Correlation of sedimentary events during the Latest Cenomanian from the Basque Basin to the Castilian Ramp (Northern Spain). Geogaceta, 20: 46–49

    Google Scholar 

  • Fondecave-Wallez MJ, Souquet P, Gourinard Y (1988) Synchronisme des séquences sédimentaires du comblement fini Crétacé avec les cycles eustatiques dans les Pyrénées Centro-Méridionales (Espagne). Comptes Rendus de l’Académie des Sciences, Paris, 307 (2): 289–293

    Google Scholar 

  • Fondevilla V, Dinarès-Turell J, Oms O (2016) The chronostratigraphic framework of the South-Pyrenean Maastrichtian succession reappraised: Implications for basin development and end-Cretaceous dinosaur faunal turnover. Sedimentary Geology 337 (2016) 55–68

    Google Scholar 

  • Forster A, Kuypers MMM, Turgeon SC, Brumsack HJ, Petrizzo MR, Sinninghe Damsté JS (2008) The Cenomanian/ Turonian oceanic anoxic event in the South Atlantic: new insights from a geochemical study of DSDP Site 530a. Palaeogeography, Palaeoclimatology, Palaeoecology, 267, 3–4: 256–283

    Google Scholar 

  • Foucault A, (1962) L’unité du Rio Guardal (Prov. de Grenade, Espagne) et les liaisons entre Prébétique et Subbétique: Bulletin de la Sociétè Géologique de France, 7 (4): 446–452

    Google Scholar 

  • Fourcade E, Azéma J, Chabrier G, Chauve P, Foucault A, Rangheard Y (1977) Liaisons paléogéographiques au Mésozoique entre les Zones Externes Bétiques, Baléares, Corso-Sardes et Alpines. Revue de Géographie Physique et de Géologie Dynamique (2) 19, 377–388

    Google Scholar 

  • Fourcade E, Chauve P, Chabrier G (1982) Stratigraphie et tectonique de l’île d’Ibiza, témoin du prolongement de la nappe subbétique aux Baléares (Espagne). Eclogae geologicae Helvetiae 75 (2): 415–436

    Google Scholar 

  • Friis EM, Pedersen KR, Crane PR (1999) Early angiosperm diversification, the diversity of pollen associated with angiosperm reproductive structures in Early Cretaceous floras from Portugal. Annals of the Missouri Botanical Garden 86: 259–296

    Google Scholar 

  • Galdeano A, Moreau MG, Pozzi JP, Berthou PY (1989) New paleomagnetic results from Cretaceous sediments near Lisboa (Portugal) and implications for the rotation of Iberia. Earth and Planetary Science Letters 92: 95–106

    Google Scholar 

  • Gallemí J, López G, Martínez R, Pons JM (2007) Macrofauna of the Cantera de Margas section, Olazagutia: Coniacian/Santonian boundary, Navarro-Cantabrian Basin, northern Spain. Cretaceous Research 28: 5–17

    Google Scholar 

  • Gallemí J, Martínez R, Pons JM (1982) Unidades del Cretácico Superior en los alrededores de Sant Corneli (prov. de Lleida), Cuad Geol Ibér, 8: 935–948

    Google Scholar 

  • Gallemí J, Martínez R, Pons JM (1983) Coniacian-Maastrichtian of the Tremp Area (South Central Pyrenees), Newsletter Stratigraphy, 12: 1–17

    Google Scholar 

  • Gallemí J, Pons JM, Hofling R, Moussavian E (1994) Los Hippurites del Barranc del Racó, microfacies y fauna asociada (Maastrichtiense Superior, sur de la provincia de Valencia). Cuadernos Geología Ibérica 18: 271–308

    Google Scholar 

  • Gallemí J, López G, Martínez R, Muñoz J, Pons JM (1995) Distribution of some Campanian and Maastrichtian macrofaunas in southeast Spain. Cretaceous Research 16(2): 257–271

    Google Scholar 

  • Gallemí J, López G, Martínez R, Muñoz J, Pons JM (1997) Albian-Cenomanian and Campanian-Maastrichtian biostratigraphy of southeast Spain. Cretaceous Research 18(3): 355–372

    Google Scholar 

  • Garcés M, García-Senz J, Muñoz JA, López-Mir B, Beamud E (2016) Timing of magnetization and vertical-axis rotations of the Cotiella massif (Late Cretaceous, South Central Pyrenees). In: Pueyo EL, Cifelli F, Sussman AJ, Oliva-Urcia B (ed) Palaeomagnetism in Fold and Thrust Belts: New Perspectives. Geological Society, London, Special Publications, 425: 213–232

    Google Scholar 

  • García A, Gimenez R, Segura M (1985) Un modelo para la etapa “proto-atlantica” del Cretácico medio en la Cordillera Ibérica Suroccidental. Estudios Geológicos 41, 3–4: 201–206

    Google Scholar 

  • García A, Segura M, García-Hidalgo JF, Carenas B (1993) Mixed siliciclastic and carbonate platform of Albian Cenomanian age from the Iberian basin (Spain). In: Cretaceous Carbonate Platforms, Simo JAT, Scott BW, Masse JP (eds), American Association of Petroleum Geologists Memoir, 56: 255–269

    Google Scholar 

  • García A, Mas R, Segura M, Carenas B, García-Hidalgo JF, Gil J, Alonso A, Aurell M, Bádenas B, Benito BI, Meléndez A, Salas R (2004) Segunda fase de post-rifting: Cretacico Superior. In: Geología de España, Vera JA (ed) Sociedad Geológica de España, Instituto Geológico y Minero de España, 510–522

    Google Scholar 

  • García-Dueñas V (1967) La Zona Subbética en el Norte de Granada Tesis Doctoral, Universidad de Granada: 417 pp

    Google Scholar 

  • García-Hernández M, López-Garrido AC, Rivas P, Sanz De Galdeano C, Vera JA (1980) Mesozoic paleogeographic evolution of the External Zones of the Betic Cordillera. Geologie en Mijnbouw, 59: 155–168

    Google Scholar 

  • García-Mondéjar J (1982) Región Vasco-Cantábrica y Pirineo Navarro. Aptiense y Albiense. In: El Cretácico de España, Universidad Complutense de Madrid, 63–84

    Google Scholar 

  • García-Mondéjar J (1996) Plate reconstruction of the Bay of Biscay. Geology, 24: 635–638

    Google Scholar 

  • García-Mondéjar J, Fernández-Mendiola PA (1992) Incised valley fills at a lower Albian sequence boundary (western Basque-Cantabrian basin, north Spain). Geogaceta, 11: 105–107

    Google Scholar 

  • García-Mondéjar J, Aranburu A, Rosales I, Fernández-Mendiola PA (1993) El surco paleogeográfico de Trucíos—Somorrostro (Albiense inferior, W de Vizcaya). Geogaceta, 13: 38–42

    Google Scholar 

  • García-Mondéjar J, Agirrezabala LM, Aranburu A, Fernández Mendiola PA, Gómez-Pérez I, López-Horgue M, Rosales I (1996) Aptian—Albian tectonic pattern of the Basque-Cantabrian Basin (northern Spain). Geological Journal, 31: 13–45

    Google Scholar 

  • García-Mondéjar J, Fernández-Mendiola F, Aguirrezabala LM, Aranburu A, López-Horgue E, Irarte E, Martínez De Rituerto S (2004) El Aptiense—Albiense de la Cuenca Vasco-Cantábrica. In: Geología de España, Vera JA (ed), Sociedad Geológica de España, Instituto Geológico y Minero de España, 291–296

    Google Scholar 

  • García-Mondéjar J, Pujalte V (1985) The black flysch (upper Albian—lower Cenomanian) in the bay of Arminza, Vizcaya. In: Excursion guidebook 6th European Regional Meeting of the International Association of Sedimentologists. Mila MD, Rosell J (ed), 313–329

    Google Scholar 

  • García-Senz J (2002) Cuencas extensivas del Cretácico Inferior en los Pirineos centrales, formación y subsecuente inversión. (Ph.D. dissertation), 310 p, University of Barcelona

    Google Scholar 

  • García-Senz J, Ramírez JL (1997) Memoria y mapa geológico de España a escala 1:50.000, Hoja de Pont de Suert nº213 (32–10), Instituto Geológico y Minero de España IGME, Madrid, 2ª Serie MAGNA

    Google Scholar 

  • García-Villar A (1996) Memoria y mapa geológico de España a escala 1:50.000, Hoja de Benabarre nº289 (32–12), Instituto Geológico y Minero de España, Madrid, 2ª Serie MAGNA

    Google Scholar 

  • Garrido-Megías A (1973) Estudio geológico y relación entre tectónica y sedimentación del Secundario y Terciario de la vertiente meridional pirenaica en su zona central (provincias de Huesca y Lérida). Ph.D. dissertation, Universidad de Granada, 395 p

    Google Scholar 

  • Garrido-Megías A, Ríos-Aragües LM (1972) Síntesis geológica del Secundario y Terciario entre los ríos Cinca y Segre (Pirineo central de la vertiente surpirenaica, provincias de Huesca y Lérida). Boletín Geológico y Minero 83: 1–47

    Google Scholar 

  • Ghibaudo G, Mutti E, Rosell J (1974) Le spiagge fossili delle Arenarie di Arén (Cretacico superiore) nella Valle Noguera Ribagorzana (Pirenei Centro-Meridionali, provincie di Lérida e Huesca, Spagna). Mem Soc Geol Ital, 13: 497–537

    Google Scholar 

  • Gil J, García A (1996) El Cretácico del borde meridional del Sistema Central: unidades litoestratigráficas y secuencias deposicionales. Estudios Geológicos, 52, 1–2: 37-49.

    Google Scholar 

  • Gil J, Carenas B, Segura M, García-Hidalgo JF, García A (2004) Revisión y correlación de las unidades litoestratigráficas del Cretácico superior en la región central y oriental de España. Revista de la Sociedad Geológica de España, 17, 3–4: 249–266

    Google Scholar 

  • Giménez R (1987) Estratigrafía y sedimentología del Cretácico superior en el sector Almansa—Requena (Provincias de Albacete y Valencia). Tesis Doctoral (Umpublished), Universidad Complutense Madrid, 224 p

    Google Scholar 

  • Giménez R (1989) La mégaséquence transgressive—régressive du Cénomanien supérieur dans la région méridionale de la Chaîne Ibérique (provinces de Valence et d’Albacete, Espagne. Géobios, Mémoire Spécial 11: 43–52

    Google Scholar 

  • Giménez R, Martín-Chivelet J, Vilas L (1993) Upper Albian to Middle Cenomanian Carbonate Platforms of Betic and Iberian Basins (Spain). In: Cretaceous Carbonate Platforms, Simó JAT, Scott RW, Masse JP (eds), American Association of Petroleum Geologists Memoir, 56: 271–281

    Google Scholar 

  • Gong Z, Langereis CG, Mullender TAT (2008) The rotation of Iberia during the Aptian and the opening of the Bay of Biscay. Earth and Planetary Science Letters 273, 80–93. http://dx.doi.org/10.1016/j.epsl.2008.06.016

  • Grange M, Scharer U, Merle R, Girardeau J, Cornen G (2010) Plume–Lithosphere Interaction during Migration of Cretaceous Alkaline Magmatism in SW Portugal: Evidence from U–Pb Ages and Pb–Sr–Hf Isotopes, Journal of Petrology, 51(5): 1143–1170. https://doi.org/10.1093/petrology/egq018

  • Groot JJ, Groot CR (1962) Plant microfossils from Aptian, Albian and Cenomanian deposits of Portugal. Comunicações dos Serviços Geológicos de Portugal 66: 133–176

    Google Scholar 

  • Gräfe K-U (1994) Sequence Stratigraphy in the Cretaceous and Paleogene (Aptian to Eocene) of the Basco-Cantabrian Basin (N. Spain). Tübinger geowissenschaftliche Arbeiten, (A), 18, 418 p

    Google Scholar 

  • Gräfe K-U (1996) Sedimentary cycles in the Upper Cretaceous of the Basco-Cantabrian Basin (N. Spain). an application of sequence stratigraphy. Mitteilungen aus dem Geologisch-Paläontologischen Institut der Universität Hamburg, 77: 243–270

    Google Scholar 

  • Gräfe K-U (1999) Sedimentary cycles, burial history and foraminiferal indicators for systems tracts and sequence boundaries in the Cretaceous of the Basco-Cantabrian Basin (Northern Spain). Neues Jahrbuch für Geologie und Paläontologie Abhandlungen, 212: 85–130

    Google Scholar 

  • Gräfe K-U (2000) Cenomanian planktic foraminiferal stratigraphy in a deeper-water section (Galarreta, Basco-Cantabrian Basin, Northern Spain). Newsletters on Stratigraphy 38, 101–115

    Google Scholar 

  • Gräfe K-U (2005) Late Cretaceous benthic foraminifers from the Basque-Cantabrian basin.Northern Spain. Journal of Iberian Geology 31 (2): 277–298

    Google Scholar 

  • Gräfe K-U, Wiedmann J (1993) Sequence stratigraphy in the Upper Cretaceous of the Basco-Cantabrian Basin (Northern Spain). Geologische Rundschau, 82: 327–361

    Google Scholar 

  • Gräfe K-U, Wiedmann J (1998). Sequence stratigraphy on a carbonate ramp: the Late Cretaceous Basco-Cantabrian Basin (northern Spain). In: Mesozoic and Cenozoic Sequence Stratigraphy of European Basins, Graciansky PC, De Hardenbol J, Jacquin T, Vail PR (eds), Society of Economic Paleontologists and Mineralogists Special Publication, 60: 333–341

    Google Scholar 

  • Gutiérrez G, Lauverjat J (1978) Les Charophytes du Sénonien supérieur de la Beira Litoral (Portugal). 103 Congrès National des Sociétés Savantes 2: 105–117

    Google Scholar 

  • Gómez-Garrido A (1987) Foraminíferos planctónicos del Cretácico Superior del Surpirineo Central. (PhD dissertation), 184 p, Univ. Autònoma de Barcelona

    Google Scholar 

  • Gómez-Pérez I, Aranburu A, Fernández-Mendiola PA, García Mondéjar J (1994) Un sistema de paleoalto carbonatado—surco siliciclástico (Gorbea—Artzentales, Albiense medio, Bizkaia). Geogaceta, 16: 74–77

    Google Scholar 

  • Gómez-Pérez I (1994) El modelo de plataforma carbonatada—cuenca de Gorbea (Aptiense superior—Albiense, Bizkaia). Tesis Doctoral de la Universidad del País Vasco, 445 p

    Google Scholar 

  • Gómez de Llarena J (1958) Datos paleontológicos del flysch litoral de Guipuzcoa. El Vraconiense de septarias de Motrico. Notas y Comunicaciones del Instituto Geológico y Minero de España, 50 (2): 3–21

    Google Scholar 

  • Hancock J, Kennedy WJ, Cobban W (1993) A correlation of the upper Albian to basal Coniacian sequences of Northwest Europe, Texas and the United States Western Interior. In: Caldwell W, Kauffman EG (Eds), The evolution of the Western Interior Basin. Geological Association of Canada, special paper 39: 453–476

    Google Scholar 

  • Haq BU (2014) Cretaceous eustasy revisited. Global and Planetary Change 113: 44–58

    Google Scholar 

  • Haq BU, Hardenbol J, Vail PR (1987) Chronology of fluctuating sea levels since the Triassic. Science, 235: 1156–1167

    Google Scholar 

  • Haq BU, Hardenbol J, Vail PR (1988) Mesozoic and Cenozoic Chronostratigraphy and Eustatic Cycles. In: Wilgus CK, Hastings BS, Kendall CGSC, Posamentier H, Ross CA, Wagoner JC (Eds), Sea-Level changes, an integrated approach. SEPM Special Publication 42: 71–108

    Google Scholar 

  • Hardenbol J, Thierry J, Farley MB, Jacquin T, de Graciansky PC, Vail PR (1998) Mesozoic and Cenozoic sequence chronostratigraphic framework of European basins, Chart 1, Mesozoic and Cenozoic sequence chronostratigraphic chart. In: Graciansky PC, Hardenbol J, Jacquin T, Vail P (eds), Mesozoic and Cenozoic Sequence Stratigraphy of European Basins. SEPM Special Publication 60, Appendix.

    Google Scholar 

  • Harries PJ, Kauffman EG (1990) Patterns of survival and recovery following the Cenomanian-Turonian (Late Cretaceous) mass extinction in the Western Interior Basin, United States. Lecture Notes in Earth Sciences 30: 277–298

    Google Scholar 

  • Hart MB (1990) Cretaceous sea level changes and global eustatic curves; evidence from SW England. Proceedings of the Ussher Society 7: 268–272

    Google Scholar 

  • Hart MB (2000) Possible causes of evolutionary patterns in the nekton and plankton of the Devonian and Cretaceous. Geoscience in south-west England 10: 1–8

    Google Scholar 

  • Hart MB, Callapez PM, Fisher JK, Hannant K, Monteiro JF, Price GD, Watkinson MP (2005) Micropalaeontology and stratigraphy of the Cenomanian/ Turonian boundary in the Lusitanian Basin, Portugal. Journal of Iberian Geology 31: 311–326

    Google Scholar 

  • Hay WW (2008) Evolving ideas about the Cretaceous climate and ocean circulation. Cretaceous Research 29: 725–753

    Google Scholar 

  • Hay WW, Floegel S (2012) New thoughts about the Cretaceous climate and oceans. Earth-Science Reviews, 115 (4): 262–272

    Google Scholar 

  • Heimhofer U, Hochuli PA, Burla S, Dinis JML, Weissert H (2005) Timing of Early Cretaceous angiosperm diversification and possible links to major palaeoenvironmental change. Geology 33: 141–144

    Google Scholar 

  • Hernández-Molina FJ, Sandoval J, Aguado R, O’Dogherty L, Comas MC, Linares A (1991) Olistoliths from the Middle Jurassic in Cretaceous materials of the Fardes Formation. Biostratigraphy. (Subbetic Zone, Betic Cordillera). Rev Soc Geol España, 4: 79–104

    Google Scholar 

  • Herrero C, Herrero E, Martín-Chivelet J, Perez Lorente F (2016) Contribution to knowledge of the last dinosaur footprints in Europa. Persistence of ornithopods in the upper Maastrichtian of SE Spain. Cretaceous Research. 57: 490–507. http://dx.doi.org/10.1016/j.cretres.2015.05.011

  • Hiscott RN, Wilson R, Gradstein FM, Pujalte V, García-Mondéjar J, Boudreau RR, Wishart HA (1990) Comparative stratigraphy and subsidence history of Mesozoic rift basins of North Atlantic. AAPG Bulletin 74: 60–76

    Google Scholar 

  • Hoedemaeker PhJ (1973) Olisthostromes and other delapsional deposits, and their occurrence in the region of Moratalla (Prov. of Murcia, Spain). Scripta Geologica 19, 207 p

    Google Scholar 

  • Hottinger L, Caus E (2009) Meandropsinidae, an ophtalmidid family of late Cretaceous K-strategist foraminifera endemic in the Pyrenean Gulf. N. Jb. Geol. Paläont. Abh. 253/2–3, 249–279

    Google Scholar 

  • Hottinger L, Drobne K, Caus E (1989) Late Cretaceous larger miliolids (foraminifera) endemic in the Pyrenean faunal province. Facies (Erlangen) 21: 99–134

    Google Scholar 

  • Huber BT, Norris RD, McLeod KG (2002) Deep-sea paleotemperature record of extreme warmth during the Cretaceous. Geology 30: 123–126

    Google Scholar 

  • James V, Canérot J (1999) Diapirisme et structuration post-triasique des Pyrénées occidentales et de l’Aquitaine méridionale (France). Eclogae geol. Helv. 92: 63–72

    Google Scholar 

  • Jammes S, Manatschal G, Lavier L, Masini E (2009) Tectonosedimentary evolution related to extreme crustal thinning ahead of a propagating ocean: Example of the western Pyrenees. Tectonics, 28(4), TC4012. https://doi.org/10.1029/2008tc002406

  • Jerez L (1973) Geología de la Zona Prebética en la transversal de Elche de la Sierra y sectores adyacentes (Prov. de Albacete y Murcia). PhD. Thesis, Universidad de Granada, 745 p

    Google Scholar 

  • Jonet S (1981) Contribution à l’étude des vertébrés du Crétacé portugais et spécialement du Cénomanien de l’Estrémadure. Comunicações dos Serviços Geológicos de Portugal 67: 191–300

    Google Scholar 

  • Kauffman EG, Hart MB (1996) Cretaceous bio-events. In Walliser OH (ed): Global Events and Event Stratigraphy in the Phanerotoic, 285–312. Springer-Verlag, Berlin

    Google Scholar 

  • Kauffman EG, Johnson CC (1988) The morphological and ecological evolution of Middle and Upper Cretaceous reef-building rudists. Palaios, 3: 194–216

    Google Scholar 

  • Kennedy WJ (1984) Ammonite faunas and the “standard zones” of the Cenomanian to the Maastrichtian stages in their type areas, with some proposals for the definition of stage boundaries by ammonites. Bulletin of the Geological Society of Denmark 33: 147–161

    Google Scholar 

  • Kenter JAM, Reijmer JJG, van der Straaten HC, Peper T (1990) Facies patterns and subsidence history of the Jumilla­Cieza region (SE­Spain). Sediment Geol, 67: 263–280

    Google Scholar 

  • Kley J, Voigt T (2008) Late Cretaceous intraplate thrusting in central Europe: Effect of Africa-Iberia-Europe convergence, not Alpine collision. Geology, 36(11): 839–842. doi:https://doi.org/10.1130/G24930A.1.

  • Kuhnt W, Obert D (1991) Evolution crétacée de la marge tellienne. Bulletin de la Societé Géologique de France, 162: 515–522

    Google Scholar 

  • Kullberg JC, Rocha RB, Soares AF, Rey J, Terrinha P, Azerêdo AC, Callapez P, Duarte LV, Kullberg MC, Martins L, Miranda JR, Alves C, Mata J, Madeira J, Mateus O, Moreira M, Nogueira CR (2013) A Bacia Lusitaniana, estratigrafia, paleogeografia e tectónica. In: Dias R, Araújo A, Terrinha P, Kullberg JC. (eds), Geologia de Portugal, II, Geologia Meso-cenozóica de Portugal. Livraria Escolar Editora, Lisboa, 195–347

    Google Scholar 

  • Küchler T (1998) Upper Cretaceous of the Barranca (Navarra, northern Spain); integrated litho-, bio-, and event stratigraphy. Acta Geologica Polonica, 48: 157–236

    Google Scholar 

  • Küchler T, Kutz A (1989) Biostratigraphie des Campan bis Unter-Maastricht der E-Barranca und des Urdiroz/ Imiscoz—Gebietes (Navarra, N-Spanien). In: Cretaceous of the Western Tethys, Wiedmann J (ed), Schchweitzerbart, 191–213

    Google Scholar 

  • Lagabrielle Y, Bodinier JL (2008) Submarine reworking of exhumed subcontinental mantle rocks: field evidence from the Lherz peridotites, French Pyrenees. Terra Nova, 20: 11–21

    Google Scholar 

  • Lagabrielle Y, Labaume P, De Saint Blanquat M (2010) Mantle exhumation, crustal denudation, and gravity tectonics during Cretaceous rifting in the Pyrenean realm (SW Europe): Insights from the geological setting of the lherzolite bodies, Tectonics, 29, TC4012. https://doi.org/10.1029/2009tc002588

  • Lagier Y (1985) Recherches sédimentologiques sur des dépôts calcaires profonds (Exemples du Crétacé supérieur des Pyrénées). Thèse 3ème Cycle Sciences. Toulouse, 217 p

    Google Scholar 

  • Lamolda MA (1982) Foraminíferos planctónicos del Cretácico Superior Vasco-Cantábrico: Distribución y bioestratigrafía. Cuadernos Geología Ibérica, 8: 111–123

    Google Scholar 

  • Lamolda MA, Mathey B, Rossy M, Sigal J (1983) La edad del volcanismo Cretácico de Vizcaya y Guipuzcoa. Estudios geológicos, 39: 151–155

    Google Scholar 

  • Lamolda MA, López-Sanjaume G, Martínez R (1989) Turonian integrated biostratigraphy in the Estella Basin (Navarra, Spain). In: Cretaceous of the Western Tethys, WIEDMANN J (ed), Schweizerbart, 145–159

    Google Scholar 

  • Lapa MR (1979) Nota sobre minerais de argila presentes em formações sedimentares da Orla Meso-Cenozóica Ocidental. Memórias e Notícias 87: 19–27

    Google Scholar 

  • Lapparent AF de, Quintero L, Trigueros E (1957) Descubrimientos de huesos de dinosaurios en el Cretáceo terminal de Cubilla (Provincia de Soria). Notas y Comunicaciones del lnstituto Geológico y Minero de España, 45: 3–5

    Google Scholar 

  • Lauverjat J (1978) Le Cénomanien de la vallée du Mondego (Portugal). Limite avec le Turonien. Evolution Ouest-Est, implications paléogéographiques. Géologie Méditerranéenne 5, 109–114

    Google Scholar 

  • Lauverjat J (1982) Le Crétacé Supérieur dans le Nord du Bassin Occidental Portugais. Unpublished Ph.D. Thesis. Université Pierre et Marie Curie, Paris, 716 p

    Google Scholar 

  • Lauverjat J, Pons D (1978) Le gisement Sénonien d’Esgueira (Portugal), stratigraphie et flore fossile. 103 Congrès National des Sociétés Savantes 2: 119–137

    Google Scholar 

  • Leclerc J (1971) Etude géologique du massif du Maigmo et de ses abords (Province d’Alicante, Espagne). Thèse Doctorat, Univ. Paris, 128 p

    Google Scholar 

  • Leclerc J, Azéma J (1976) Le Crétacé dans la région d’Agost (Province d’Alicante, Espagne) et ses accidents sédimentaires. Cuadernos de Geología. Universidad de Granada, 7: 35–51

    Google Scholar 

  • Leret G, Cámara P, Leret I (1982) Aportación al conocimiento estratigráfico y sedimentológico del Cretácico en la zona prebética oriental (Transversal Villena-Alicante). Cuad. Geol. Ibérica, 8: 465–482

    Google Scholar 

  • Llompart C, Casanovas ML, Santafé JV (1984) Un nuevo yacimiento de icnitas de dinosaurios en las facies garumnienses de la Conca de Tremp (Lleida, España). Acta Geológica Hispánica 19: 143–147

    Google Scholar 

  • Lloyd C (1982) The mid Cretaceous Earth, Palaeogeography; ocean circulation and temperature, atmospheric circulation. Journal of Geology 90: 393–413

    Google Scholar 

  • Loriol P de (1887–1888) Recueil d’études paléontologiques sur la faune Crétacique du Portugal, 2, Description des Echinodermes. Commission des Travaux Géologiques du Portugal, Lisbonne, 122 p

    Google Scholar 

  • Lotze F (1960) Zur Gliederung der Oberkreide in der Baskischen Depression (Nordspanien). Neues Jahrbuch für Geologie und Paläontologie, 3: 132–144

    Google Scholar 

  • Luperto Sinni E, Martín Chivelet J, Giménez R (2000) Praemurgella valenciana n.gen. n.sp. (Foraminifera) in the Sierra de Utiel Formation (Coniacian—Santonian) of the Prebetic Domain (SE Spain). Geobios, 32, 2: 145–151

    Google Scholar 

  • López-Horgue MA, Aranburu A, Fernández-Mendiola PA, García-Mondéjar J (2000) Existencia de una discordancia angular con laguna de Albiense medio en el Complejo Urgoniano de Ranero (Ramales—Karrantza, región vasco-cantábrica). Geogaceta, 28: 89–92

    Google Scholar 

  • López-Martínez N, Canudo JI, Ardèvol L, Pereda-Suberbiola X, Orue-Etxebarria X et al (2001) New dinosaurs sites correlated with the Upper Maastrichtian pelagic deposits in the Spanish Pyrenees: implications for the dinosaur extinction pattern in Europe. Cretaceous Research, 22: 41–61

    Google Scholar 

  • Lopez-Martinez N, Arribas ME, Robador A, Vicens E, Ardèvol L (2006) Los carbonatos Danienses (unidad 3) de la Fm Tremp (Pirineos sur-centrales): paleogeografía y relación con el límite Cretácico-Terciario. Revista de la Sociedad Geológica de España, 19(3–4), 233–255

    Google Scholar 

  • López-Mir B (2013) Extensional salt tectonics in the Cotiella post-rift basin (south-central Pyrenees): 3D structure and evolution. Ph.D. dissertation, Universitat de Barcelona, 302 p

    Google Scholar 

  • López-Mir B, Muñoz JA, García-Senz J (2014) Restoration of basins driven by extension and salt tectonics: Example from the Cotiella Basin in the central Pyrenees. Journal of Structural Geology, 69A, 147–162

    Google Scholar 

  • López-Mir B, Muñoz JA, García-Senz J (2015) Extensional salt tectonics in the partially inverted Cotiella post-rift basin (south-central Pyrenees): structure and evolution. International Journal of Earth Sciences 104: 419–434

    Google Scholar 

  • López-Mir B, Muñoz JA, García-Senz J (2016a) 3D geometric reconstruction of Upper Cretaceous passive diapirs and salt withdrawal basins in the Cotiella Basin (southern Pyrenees). Journal of the Geological Society 173: 616–627

    Google Scholar 

  • López-Mir B, Muñoz JA, García-Senz J (2016b) Geology of the Cotiella thrust sheet, southern Pyrenees (Spain), Journal of Maps, 12: sup1, 323–327. https://doi.org/10.1080/17445647.2016.1211895

  • López-Sanjaume G (1990) Inocerámidos (Bivalvia) del cretácico superior de la cuenca Navarro-Cántabra y de la plataforma nord-Castellana paleontología y bioestratigrafía. Doctoral Thesis, Universitat Autònoma de Barcelona. 534 p

    Google Scholar 

  • López Olmedo F, Ardèvol L (1994) Memoria y mapa geológico de España a escala 1:50.000, Hoja de Arén nº251 (32–11), Instituto Geológico Minero de España, Madrid, 2ª Serie MAGNA

    Google Scholar 

  • Macintyre GW, Berger RM (1982) A note on the geochronology of the Iberian Alkaline Province. Lithos 15: 133–136

    Google Scholar 

  • Malod JA, Boillot G, Capdevila R, Dupeuble PA, Lepvrier C, Mascle G, Müller C, Taugourdeau-Lantz J (1982) Subduction and tectonics on the continental margin off northern Spain, observations with the submersible Cyana. In: Trench—Forearc Geology, LEGGETT JK (ed), Geological Society of London, Special Publication 10: 309–315

    Google Scholar 

  • Martínez-Torres L (1989) El Manto de los Mármoles (Pirineo occidental): geología estructural y evolución geodinámica. Tesis Doctoral de la Universidad del País Vasco, 294 p

    Google Scholar 

  • Martín-Algarra A (1987) Evolución geológica alpina del contacto entre las Zonas Internas y las Zonas Externas de la Cordillera Bética (sector central y occidental). PhD. Thesis, Universidad de Granada, 1271 p

    Google Scholar 

  • Martín-Chivelet J (1992) Las Plataformas Carbonatadas del Cretácico superior de la Margen Bética (Altiplano de Jumilla—Yecla, Murcia). Col. Tesis Doctorales, 238/93, 900 págs. Edit. Complutense, Madrid (published online in 2005, ISBN 84-699-0497-2)

    Google Scholar 

  • Martín-Chivelet J (1994) Litoestratigrafía del Cretácico superior del Altiplano de Jumilla—Yecla (Zona Prebética). Cuadernos de Geología Ibérica, 18: 117–173

    Google Scholar 

  • Martín-Chivelet J (1995) Sequence stratigraphy of mixed carbonate—siliciclastic platforms developed in a tectonically active setting: the upper Cretaceous of the Betic continental margin (Spain). Journal of Sedimentary Research, b65(2): 235–254. http://dx.doi.org/10.1306/D4268220-2B26-11D7-8648000102C1865D

  • Martín-Chivelet J (1996) Late Cretaceous stratigraphic patterns and subsidence history of the Betic Continental Margin (Jumilla—Yecla Region, SE Spain). Tectonophysics, 265: 191–211 (1996). http://dx.doi.org/10.1016/S0040-1951(96)00044-3

  • Martín-Chivelet J (2003) Quantitative analysis of accommodation patterns in carbonate platforms: An example from the mid Cretaceous of SE Spain. Paleogeography, Paleoclimatology, Paleoecology, 200: 83–105. http://dx.doi.org/10.1016/S0031-0182(03)00446-2

  • Martín-Chivelet J, Chacón B (2007) Event-stratigraphy of the Upper Cretaceous to lower Eocene hemipelagic sequences of the Prebetic Zone (SE Spain): record of the onset of tectonic convergence in a passive continental margin. Sedimentary Geology, 197 (1–2), 141–163. http://dx.doi.org/10.1016/j.sedgeo.2006.09.007

  • Martín-Chivelet J, Giménez R (1992). Palaeosols in microtidal carbonate sequences: Sierra de Utiel Formation, Upper Cretaceous, SE Spain. Sedimentary Geology, 81: 125–145. http://dx.doi.org/10.1016/0037-0738(92)90060-5

  • Martín-Chivelet J, Giménez R (1993) Évolutions sédimentaires et tectoniques des plates-formes du sud-est de l’Espagne au cours du Cénomanien supérieur—Coniacien inférieur. Cretaceous Research, 14: 509–518. http://dx.doi.org/10.1006/cres1993.1036

  • Martín-Chivelet J, Ramírez del Pozo J, Tronchetti G, Babinot JF (1995) Paleoecology of the upper Maastrichtian platforms in the Betic continental margin, SE Spain. Palaeogeography, Palaeoclimatology, Palaeoecology, 98, 169–186 (1995). http://dx.doi.org/10.1016/0031-0182(95)00067-4

  • Martín-Chivelet J, Berástegui X, Rosales I, Vilas L, Vera JA, Caus E, Gräfe K.U, Mas R, Puig C, Segura M, Robles S, Floquet M, Quesada S, Ruiz-Ortiz A, Fregenal-Martínez, Mª. A, Salas R, Arias C, García A, Martín-Algarra A, Meléndez MN, Chacón B, Molina JM, Sanz JL, Castro, JM, García-Hernández M, Carenas B, García-Hidalgo J, Gil J, Ortega F (2002) Cretaceous. In: Geology of Spain. Gibbons, W, Moreno, MT eds, pp 255–292. The Geological Society. London

    Google Scholar 

  • Martín-Chivelet J, Fregenal Martínez MA, Chacón B (2003) Mid-depth calcareous contourites in the Latest Cretaceous of Caravaca (Subbetic Zone, SE Spain). Origin and palaeohydrological significance. Sedimentary Geology, 163 (1–2): 131–146. http://dx.doi.org/10.1016/S0037-0738(03)00176-3.

  • Martín-Chivelet J, Giménez R, Luperto Sinni E. (1997) La discontinuidad del Campaniense basal en el Prebético: ¿Inicio de la convergencia alpina en la Margen Bética? Geogaceta, 22: 127–130

    Google Scholar 

  • Martínez R (1982) Distribución de los Ammonites del Cretácico Sudpirenaico. Cuadernos de Geología Ibérica, 8: 1035–1047

    Google Scholar 

  • Martínez R (1997) Campanian and Maastrichtian ammonites from southeast Spain. Cretaceous Research, 18: 373–384

    Google Scholar 

  • Martínez del Olmo W (2003) La Plataforma Cretácica del Prebético y su falta de continuidad por el Margen Sudibérico. Journal of Iberian Geology, 29: 111–134

    Google Scholar 

  • Martínez del Olmo W, Leret G, Megías AG (1982) El límite de la plataforma carbonatada del Cretácico Superior en la zona Prebética. Cuadernos Geología Ibérica, 8: 597–614

    Google Scholar 

  • Martínez del Olmo W, Martín D, Motis K (2013) El Cretácico del Prebético Interno en la región de Moratalla (Murcia, SE de España). Revista de la Sociedad Geológica de España, 26 (2): 13–22

    Google Scholar 

  • Masini E, Manatschal G, Tugend J, Mohn G, Flament JM (2014) The tectono-sedimentary evolution of a hyper-extended rift basin: the example of the Arzacq–Mauléon rift system (Western Pyrenees, SW France). Int J Earth Sci (Geol Rundsch) 103: 1569–1596. https://doi.org/10.1007/s00531-014-1023-8

  • Mathey B (1982) El Cretácico superior del Arco Vasco. In: El Cretácico de España. Universidad Complutense Madrid, 111–135

    Google Scholar 

  • Mathey B (1987) Les flyschs Crétacé supérieur des Pyrénées Basques. Mémoires Géologiques de l’Université de Dijon, 12, 399 p

    Google Scholar 

  • Mathey B (1988) Paleogeographical evolution of the Basco-Cantabrian Domain during the Upper Cretaceous. Revista Española de Micropaleontología, número extraordinario, 142–147

    Google Scholar 

  • Mathey B, Floquet M, Amiot M (1983) La marge ibérique au Sénonien inférieur dans la région de la Sierra d’Aralar (Navarre, Espagne). Caractérisation sédimentologique et paléogéographie. Géologie Méditerranéenne, X, 3–4, 369–378

    Google Scholar 

  • Mathey B, Floquet M, Martinez-Torres L (1999) The Leiza Palaeo—Fault: role and importance in the Upper Cretaceous sedimentation and palaeogeography of the Basque Pyrenees. Comptes Rendus de l’Académie des Sciences de Paris, 328, IIa, 393–399

    Google Scholar 

  • Masse JP, Arias C, Vilas L (1992) Stratigraphy and biozonation of a reference Aptian-Albian p.p. Tethyan carbonate platform succession: The Sierra del Carche series (oriental Prebetic zone-Murcia, Spain). In: New aspects on Tethyan Cretaceous Fossil Assemblages. Schrif. der Erdwiss. Komm. der Österrei. Akad. der Wissen, 9: 201–221

    Google Scholar 

  • McClay K, Muñoz JA, García-Senz J (2004) Extensional salt tectonics in a contractional orogen: A newly identified tectonic event in the Spanish Pyrenees. Geology, 32 (9): 737–740

    Google Scholar 

  • Mencos J (2010) Metodologies de reconstrucció i modetització 3D d’estructures geològiques: Anticlinal de Sant Corneli–Bóixols (Pirineus centrals), Ph.D. thesis, 277 p, Univ. of Barcelona

    Google Scholar 

  • Mencos J, Carrera N, Muñoz JA (2015) Influence of rift basin geometry on the subsequent postrift sedimentation and basin inversion: The Organyà Basin and the Bóixols thrust sheet (south central Pyrenees). Tectonics. https://doi.org/10.1002/2014tc003692

  • Mendes MM, Dinis JL, Esteban LG, Palacios P, Fernández FG, Pais J (2014) Early Cretaceous woods of Figueira da Foz Formation in western Portugal, Palaeoenviromental, palaeoclimatic and palaeobiogeographic insights. Cretaceous Research 51: 112–120

    Google Scholar 

  • Meschede M (1985) The geochemical character of volcanic rocks of the Basco-Cantabrian Basin, Northeastern Spain. Neues Jahrbuch für Geologie und Paläontologie Abhandlungen, 2: 115–128

    Google Scholar 

  • Mey PHW (1968) Geology of the upper Ribagorzana and Tor valleys, central Pyrenees, Spain. Shhet 8, 1:50.000. Leidse Geologische Mededelingen, 41: 229–292

    Google Scholar 

  • Mey PHW, Nagtegaal PJC, Roberti KJ, Hartevelt JJA (1968) Lithostratigraphic subdivision of posthercynian deposits in the south-central Pyrenees, Spain. Leidse Geologische Mededelingen, 41: 221–228

    Google Scholar 

  • Miller KG, Kominz MA, Browning JV, Wright JD, Mountain GS, Katz ME, Sugarman PJ, Cramer BS, Christie-Blick N, Pekar SF (2005) The Phanerozoic Record of Global Sea-Level Change, Science, 310: 1293–1298

    Google Scholar 

  • Miranda R, Valadares R, Terrinha P, Mata J, Azevedo MR, Gaspar M, Kullberg JC, Ribeiro C (2009) Age constraints on the Late Cretaceous alkaline magmatism on the West Iberian Margin. Cretaceous Research 30: 575–586

    Google Scholar 

  • Misch P (1934) Der Bau der Mittleren Südpyrenäen. Abh. Ges. Wiss. Göttingen, Math.-Phys. Kl. III Folge, 12, 1–168 (Spanish Transl.: La estructura tectónica de la región central de los Pirineos meridionales. Publ. extranjeras sobre la geología de España, IV, 178 p.)

    Google Scholar 

  • Molina JM (1987) Análisis de facies del Mesozoico en el Subbético externo (Provincia de Córdoba y Sur de Jaén). Ph.D. Thesis, Universidad de Granada, 518 p

    Google Scholar 

  • Molina JM, Vera JA, Gea GA de (1998a) Vulcanismo submarino del Santoniense en el Subbético. Datación con nanofósiles e interpretación (Formación Capas Rojas, Alamedilla, provincia de Granada). Estudios Geológicos, 54: 191–197

    Google Scholar 

  • Molina E, Arenillas I, Arz JA (1998b) Mass extinction in planktic foraminifera at the Cretaceous/Tertiary boundary in subtropical and temperate latitudes. Bulletin de la Société Géologique de France 169 (3): 351–363

    Google Scholar 

  • Molina E, Alegret L, Arenillas I, Arz JA (2005) The Cretaceous/Paleogene boundary at the Agost section revisited: paleoenvironmental reconstruction and mass extinction Molina E, Arenillas I, Arz JA 1996. The Cretaceous/Tertiary boundary mass extinction in planktic foraminifera at Agost (Spain). Revue de Micropaleontology, 39: 225–243

    Google Scholar 

  • Mongin D, Peybernès B, Souquet P, Thomel G (1983) Le gisement vraconnien (Albien supérieur) de la Selva de Bonansa (Pyrénées espagnoles): Intérêt stratigraphique, paléoécologique et paléobiogéographique. Palaeogr. Palaeoclimatol., Palaeoecol., 41, Amsterdam: 45–63

    Google Scholar 

  • Moniz C, Ribeiro ML, coords. (2011). Carta geológica de Portugal na escala de 1:50 000. Notícia explicativa da folha 34-B Loures. Laboratório Nacional de Energia e Geologia, Lisboa, 57 p

    Google Scholar 

  • Montigny R, Azambre B, Rossy M, Thuizart R (1986) K-Ar study of Cretaceous magmatism and metamorphism from the Pyrenees: age and length of rotation of the Iberian Peninsula. Tectonophysics, 129: 257–273

    Google Scholar 

  • Moreau MG, Berthou JY, Malod JA (1997) New paleomagnetic Mesozoic data from the Algarve (Portugal): fast rotation of Iberia between the Hauterivian and the Aptian. Earth and Planetary Science Letters 146: 689–701

    Google Scholar 

  • Moron J (1981) Étude Paléobotanique et Palynologique du Crétacé Supérieur du Bassin Occidental Portugais au Nord de l’accident de Nazaré (Portugal). Unpublished Ph.D. Thesis. Université Pierre et Marie Curie, Paris, 287 p

    Google Scholar 

  • Moura A (1958) Alguns equinídeos regulares fósseis da Costa d’Arnes, Alfarelos, Coimbra. Memórias e Notícias 45: 61–72

    Google Scholar 

  • Mutti E, Rosell Sanuy J (1968) Presencia de laminación oblicua a gran escala en las turbiditas senonenses del flysch de los alrededores de Pobla de Segur (Prov. de Lérida). Acta Geologica Hispanica, III, 5, pp 120–123

    Google Scholar 

  • Mutti E, Rosell Sanuy J (1969) Osservazioni sedimentologiche sul Flysch senoniano dei dintorni di Pobla de Segur (Prov. di Lérida, Spagna). Boll Soc Geol It, 88: 453–467

    Google Scholar 

  • Mutti E, Sgavetti M (1987) Sequence stratigraphy of the Upper Cretaceous Aren strata in the Orcau-Aren region, south-central Pyrenees, Spain: distinction between eustatically and tectonically controlled depositional sequences: Annali dell´Universitá di Ferrara, 1: 1–22

    Google Scholar 

  • Muñoz JA (1992) Evolution of a continental collision belt: ECORS- Pyrenees crustal balanced cross-section. In: McClay, K.R. (ed) Thrust Tectonics, Chapman and Hall, London: 235–246

    Google Scholar 

  • Muñoz JA, García-Senz J (2010) La Noguera Ribagorçana (estructura geològica). In: Atlas Geològic de Catalunya (2010) Institut Cartogràfic i Geològic de Catalunya, 463 p ISBN: 978-84-393-8331-4

    Google Scholar 

  • Muñoz JA, Beamud E, Fernández O, Arbués P, Dinarès-Turell J, Poblet J (2013) The Ainsa Fold and Thrust Oblique Zone of the Central Pyrenees: kinematics of a curved contractional system from paleomagnetic and structural data. Tectonics, 32: 1142–1175

    Google Scholar 

  • Muñoz-Moreno A, Martín-Chivelet J, Rosales I (2015) Proliferación de Microcodium durante el tránsito Cenomaniense-Turoniense en el Sur de Iberia:¿consecuencia del OAE2 en zonas emergidas? Geogaceta, 57: 83–86

    Google Scholar 

  • Muñoz JA, García-Senz J, Fernández O, Arbués P, Marzo E, Roca E (2000) Estructura geológica y estratigrafía de la Cuenca de Graus (Pirineo Central). Estado actual de conocimiento y sistemas de hidrocarburos. Internal report Repsol-YPF, 45 p

    Google Scholar 

  • Márton E, Abranches MC, Pais J (2004) Iberia in the Cretaceous: new paleomagnetic results from Portugal. Journal of Geodynamics, 38 (2): 209–221

    Google Scholar 

  • Mülder T, Zaragosi S, Razin P, Grelaud C, Lanfumey V, Bavoil F (2009) A new conceptual model for the deposition process of homogenite: application to a cretaceous megaturbidite of the western Pyrenees (Basque region, SW France) Sedimentary Geology, 222: 263–273

    Google Scholar 

  • Nagtegaal PJC (1972) Depositional history and clay minerals of the Upper Cretaceous basin in the south-central Pyrenees, Spain: Leidse Geol Med, 47 (2): 251–275.

    Google Scholar 

  • Nieto LM (1996) La cuenca subbética mesozoica en el sector oriental de las Cordilleras Béticas. PhD. Thesis, Universidad de Granada, 556 p

    Google Scholar 

  • Nirrengarten M, Manatschal G, Tugend J, Kusznir NJ, Sauter D (2017) Nature and origin of the J‐magnetic anomaly offshore Iberia–Newfoundland: implications for plate reconstructions. Terra Nova 29 (1): 20–28

    Google Scholar 

  • Néraudeau D, Mathey B (2000) Biogeography and diversity of South Atlantic Cretaceous echinoids, implications for circulation patterns. Palaeogeography, Palaeoclimatology, Palaeoecology 156: 71–88

    Google Scholar 

  • Offroy B (1984) Approches des mécanismes de sédimentation gravitaire: exemple des dépôts carbonatés des flyschs Crétacé supérieur des Pyrénées Atlantiques. Thèse de l’Université Paris 7, 230 p

    Google Scholar 

  • Ogg JG, Ogg GM, Gradstein FM (2016) A Concise Geologic Time Scale: 2016. Elsevier. 238 p

    Google Scholar 

  • Olivet JL (1996) La cinématique de la plaque ibérique. Bulletin des Centres de Recherches Exploration-Production Elf-Aquitaine, 20: 131–195

    Google Scholar 

  • Ortega F, Bardet N, Barroso-Barcenilla F, Callapez PM, Cambra-Moo O, Daviero-Gómez V, Díez Díaz V, Domingo L, Elvira A, Escaso F, García-Oliva F, Gómez B, Houssaye A, Knoll F, Marcos-Fernández F, Martín M, Mocho P, Narváez I, Pérez-García A, Peyrot D, Segura M, Serrano H, Torices A, Vidal D, Sanz JL (2015) The biota of the Upper Cretaceous site of “Lo Hueco” (Cuenca, Spain). Journal of Iberian Geology 41(1): 83–99. http://dx.doi.org/10.5209/rev_JIGE.2015.v41.n1.48657

  • Papon JP (1969) Etude géologique du massif montagneux du Turbon (Pyrénées aragonaises-Espagne). Bull Soc Hist Nat Toulouse, 105: 191–211

    Google Scholar 

  • Paquet J (1969) Etude géologique de l’Ouest de la province de Murcie (Espagne). Mémoires Societé Géologique France, 48 (111): 1–270

    Google Scholar 

  • Pascal A (1983) L’Urgonien. Systèmes biosédimentaires et tectonogenèse. In: Vue sur le Crétacé basco-cantabrique et nord-ibérique. Une marge et son arrière-pays, ses environnements sédimentaires. Mémoires géologiques de l’Université de Dijon, 9: 45–72

    Google Scholar 

  • Pascal A (1985) Les systèmes biosédimentaires urgoniens (Aptien-Albien) sur la marge nord-ibérique. Mémoires géologiques de l’Université de Dijon, 10, 569 p

    Google Scholar 

  • Peper T, Cloetingh S (1992) Lithosphere dynamics and tectono­stratigraphic evolution of the Mesozoic Betic rifted margin (southeastern Spain). Tectonophysics, 203: 345–361

    Google Scholar 

  • Pereda-Suberbiola X, Corral JC, Astibia H, Badiola A, Bardet N, Berreteaga A, Buffetaut E, Buscalioni AD, Cappetta H, Cavin, L, Díez Díaz V, Gheerbrant E, Murelaga X, Ortega F, Pérez-García A, Poyato-Ariza F, Rage J-C, Sanz JL, Torices A (2015) Late Cretaceous continental and marine vertebrate assemblages from the Laño Quarry (Basque-Cantabrian Region, Iberian Peninsula): an update. Journal of Iberian Geology, 41: 101–124. http://dx.doi.org/10.5209/rev_JIGE.2015.v41.n1.48658

  • Peybernès B, Papon JP (1968) Etude stratigraphique des terrains antécénomaniens entre la Noguera Ribagorzana et l´Esera (Pyrénées aragonaises, Espagne). Bull Soc Hist Nat. Toulouse, 104, Fasc. 3-4: 333–349

    Google Scholar 

  • Peybernès B (1976) Le Jurassique et le Crétacé inférieur des Pyrénées franco-espagnoles entre la Garonne et la Méditerranée. Thèse Doct Sc Nat. Toulouse, Imp. C.R.D.P. Toulouse, 459 p

    Google Scholar 

  • Peyrot D (2011) Description of Late Cenomanian—Early Turonian dinoflagellate cyst assemblages from the Iberian y Cantabrian Ranges. Tesis Doctoral de la Universidad Complutense Madrid, 341 p

    Google Scholar 

  • Peyrot D, Barroso-Barcenilla F, Barrón E, Comas-Rengifo MJ (2011) Palaeoenvironmental analysis of Cenomanian—Turonian dinocyst assemblages from the Castilian Platform (Northern—Central Spain). Cretaceous Research, 32: 504–526

    Google Scholar 

  • Philip J (1982) Paléobiogéographie des Rudistes et géodynamique des marges mésogéennes au Crétacé supérieur (Upper Cretaceous rudist paleobiogeography related to the geodynamic evolution of the mesogean margins): Bulletin de la Société géologique de France, 24: 995–1006

    Google Scholar 

  • Philip J (1983) Le Campanien et le Maastrichtien à rudistes et grands Foraminifères de Quatretonda (Province de Valence, Espagne): une clef pour la biozonation et les corrélations stratigraphiques dans le domaine mésogéen. Géologie Méditerranéenne, X nº 3–4, 87–98

    Google Scholar 

  • Philip J, Floquet M (2000) Late Cenomanian (94.7–93.5 Ma). In: Dercourt J, Gaetani M, Vrielynck B, Barrier E, Biju-Duval B, Brunet MF, Cadet JP, Crasquin S, Sandulescu M (eds), Peri-Tethys Palaeogeographical Atlas. CCGM/CGMW, Paris

    Google Scholar 

  • Pinheiro L, Wilson R, Reis RP, Whitmarsh R, Ribeiro A (1996) The western Iberia margin, a geophysical and geological overview. Proc. Ocean Drilling Program Scientific Research 149: 3–23

    Google Scholar 

  • Pluchery E (1995) Cycles de dépôts du continent à l’océan. Les séries d’âge Maastrichtien supérieur à Eocène moyen de la marge basco-cantabrique et de son arrière-pays ibérique (Espagne du Nord). Thèse de Doctorat de l’Université de Bourgogne, 324 p

    Google Scholar 

  • Pocoví J, A (1978) Estudio geológico de las Sierras Marginales Catalanas (Prepirineo de Lérida). Acta Geologica Hispanica, XIII (3): 73–79

    Google Scholar 

  • Pons JM (1977) Estudio estratigráfico y paleontológico de los yacimientos de rudistas del Cretácico Superior del Prepirineo de la provincia de Lérida, Publicaciones de Geología, Universidad Autónoma de Barcelona, 3, 105 p

    Google Scholar 

  • Pucéat E, Lécuyer C, Sheppard SMF, Dromart G, Reboulet S, Grandjean P (2003) Thermal evolution of Cretaceous Tethyan marine waters inferred from oxygen isotope composition of fish tooth enamels. Paleoceanography 18 (2): 7–1/7–12.

    Google Scholar 

  • Puigdefábregas C, Souquet P (1986) Tecto-sedimentary cycles and depositional sequences of the Mesozoic and Tertiary from the Pyrenees. Tectonophysics, 129: 173–203

    Google Scholar 

  • Pujalte V, Monge C (1985) A tide dominated delta system in a rapidly subsiding basin: the middle Albian—lower Cenomanian Valmaseda Formation of the Basque Cantabrian region. Northern Spain. In: 6th European Regional Meeting of the International Association of Sedimentologists, ROSELL et al (ed), Abstracts, 381–384

    Google Scholar 

  • Pujalte V, Schmitz B (2005) Revisión de la estratigrafía del Grupo Tremp («Garumniense», Cuenca de Tremp-Graus, Pirineos meridionales). Geogaceta, 38: 79–82

    Google Scholar 

  • Pérez-García A, Robles S, Vicente-Bravo JC (1993) Modelo genético de las secuencias arenosas de plataforma de la Formación Balmaseda (Albiense de la Cuenca Vascocantábrica), N de España. Geogaceta, 14: 76–79

    Google Scholar 

  • Pérez-García A, Robles S, Vicente-Bravo JC (1997) Arquitectura estratigráfica del sistema de plataforma dominada por tormentas de la Fm. Valmaseda (Albiense sup.—Cenomaniense inf. de la cuenca Vascocantábrica). Geogaceta, 22: 153–156

    Google Scholar 

  • Ramírez del Pozo J, Martín Chivelet J (1994) Bioestratigrafía y cronoestratigrafía del Coniaciense—Maastrichtiense en el sector prebético de Jumilla—Yecla (Murcia). Cuadernos de Geología Ibérica, 18: 83–116 (1994)

    Google Scholar 

  • Rat P (1959) Les pays crétacés basco-cantabriques. Publications de l’Université de Dijon, XVIII, 525 p

    Google Scholar 

  • Rat P (1988) The Basque-Cantabrian Basin between the Iberian and European plates: some facts but still many problems. Revista de la Sociedad Geológica de España, 1: 327–348

    Google Scholar 

  • Rat P, Amiot M, Feuillée P, Floquet M, Mathey B, Pascal A, Salomon J (1982) Etapes et style de l’évolution de la marge cantabrique et de son arrière-pays (Espagne) au Crétacé. Comptes Rendus de l’Académie des Sciences de Paris, 294, D, 334–337

    Google Scholar 

  • Razin P (1989) Évolution tecto-sédimentaire alpine des Pyrénées Basques à l’Ouest de la transformante de Pamplona (province du Labourd). Thèse de Doctorat de l’Université de Bordeaux 3, 464 p

    Google Scholar 

  • Razin P, Mülder T, Gérard J (2003) Processus gravitaires et évolution de bassin: le Crétacé et le Tertiaire du Pays Basque. Livret d’excursion géologique, Publication de l’Association des Sédimentologistes Français, 39, 89 p

    Google Scholar 

  • Reicherter K (1994) The Mesozoic tectono-sedimentary evolution of the central Betic Seaway (External Betic Cordillera, southern Spain). Tiibinger Geowissenschaftliche Arbeiten, Reihe A, 20, 270 p, TUbingen

    Google Scholar 

  • Reicherter KR, Pletsch TK (2000) Evidence for a synchronous circum-Iberian subsidence event and its relation to the African- Iberian plate convergence in the Late Cretaceous. Terra Nova 12: 141–147

    Google Scholar 

  • Reicherter K, Pletsch T, Kuhnt W, Manthey J, Homeier G, Wiedmann J, Thurow J (1994) Mid-Cretaceous paleogeography and paleoceanography of the Betic Seaway (Betic Cordillera, Spain). Palaeogeogr., Palaeoclima., Palaeoecol., 107: 1–33

    Google Scholar 

  • Reicherter K, Wiedmann J, Herbin JP (1996) Distribution of organic-rich sediments in Subbetic sections during the Aptian-Turonian (Betic Cordillera, Southern Spain). Revista de la Sociedad Geológica de España, 9: 75–88

    Google Scholar 

  • Reis RP (1981) La sédimentation continentale du Crétacé terminal au Miocène sur la Bordure Occidentale du Portugal, entre Coimbra et Leiria. Unpublished Ph.D. Thesis, Université de Nancy I, Nancy, 153 p

    Google Scholar 

  • Reis RP (1998) Late Cretaceous sedimentation and controls in Nazaré region (W. Portugal). Geologos 2, 117–120

    Google Scholar 

  • Reis RP, Cunha PP (1989) A definição litostratigráfica do Grupo do Buçaco na região de Lousã, Arganil e Mortágua (Portugal). Comunicações dos Serviços Geológicos de Portugal 75: 99–109

    Google Scholar 

  • Reis RP, Corrochano A, Armenteros I (1997) El paleokarst de Nazaré (Cretácico Superior de la Cuenca Lusitana, Portugal). Geogaceta 22: 149–152

    Google Scholar 

  • Reitner J (1982) Die Entwicklung von Inselplattformen und Diapir-Atollen im Alb des Basko-Kantabrikums (Nordspanien). Neues Jahrbuch für Geologie und Paläontologie Abhandlungen, 165 (1): 87–101

    Google Scholar 

  • Reitner J (1985) A comparative study of the diagenesis in diapir—influenced reef atolls and a fault block reef platform in the Late Albian of the Vasco-Cantabrian basin (Northern Spain). In: Reef Diagenesis, SCHROEDER JH, PURSER BH (ed), Springer Verlag, 186–209

    Google Scholar 

  • Reitner J, Wiedmann J (1982) Die Deltaphasen der Unterkreide am Basko-kantabrischen Kontinentalrand, Nordspanien. Neues Jahrbuch für Geologie und Paläontologie Abhandlungen, 165 (1): 60–76

    Google Scholar 

  • Reolid M, Sánchez-Quiñónez CA, Alegret L, Molina E (2016) The biotic crisis across the Oceanic Anoxic Event 2: Palaeoenvironmental inferences based on foraminifera and geochemical proxies from the South Iberian Palaeomargin, Cretaceous Research, 60: 1–27. https://doi.org/10.1016/j.cretres.2015.10.011

  • Rey J (1972) Recherches géologiques sur le Crétacé Inférieur de l’Estremadura (Portugal). Memórias dos Serviços Geológicos de Portugal 21, 477 p

    Google Scholar 

  • Rey J (1979) Le Crétacé Inférieur de la marge atlantique portugaise: Biostratigraphie, organisation séquentielle, évolution paléogéographique. Ciências da Terra 5: 97–121

    Google Scholar 

  • Rey J (1992) Les unités lithostratigraphiques du Crétacé Inférieur de la région de Lisbonne. Comunicações dos Serviços Geológicos de Portugal 78: 103–124

    Google Scholar 

  • Rey J (1993) Les unités lithostratigraphiques du Grupe de Torres Vedras (Estremadura, Portugal). Comunicações do Instituto Geológico e Mineiro 79: 75–85

    Google Scholar 

  • Rey J (2006) Stratigraphie séquentielle et séquences de dépôt dans le Crétacé Inférieur du Bassin Lusitanien. Ciências da Terra, special volume 6: 1–120

    Google Scholar 

  • Rey J (2010) La dynamique sédimentaire des Bassins Lusitanien et de l’Algarve au Crétacé Inférieur. Ciências da Terra 17: 45–52

    Google Scholar 

  • Rey J, Cugny P (1977) Ecoséquences et paléoenvironnements de l’Albien du Portugal. Bulletin de la Société d’Histoire Naturelle de Toulouse 113: 374–386

    Google Scholar 

  • Rey J, Graciansky PC de, Jacquin T (2003) Les séquences de dépôt dans le Crétacé inférieur du Bassin Lusitanien. Comunicações do Instituto Geológico e Mineiro 90: 15–42

    Google Scholar 

  • Rey J, Bilotte M, Peybernès B (1977) Analyse biostratigraphique et paléontologique de l’Albien marin d’Estremadura (Portugal). Géobios 10: 369–393

    Google Scholar 

  • Rey J, Dinis JL, Callapez PM, Cunha PP (2006) Da rotura continental à margem passiva. Composição e evolução do Cretácico de Portugal. Cadernos de Geologia de Portugal, INETI, Lisboa 75 p

    Google Scholar 

  • Rey J, Caetano P, Callapez PM, Dinis JL (2009) Le Crétacé du Bassin Lusitanien. Livre-Guide de l’excursion du Groupe Français du Crétacé et de I’Association des Géologues du Sud-Ouest, Lisbonne, 100 p

    Google Scholar 

  • Ribeiro A, Antunes MT, Ferreira P, Rocha RB, Ferreira Soares A, Zbyszewsky G, Almeida FM, Carvalho D, Monteiro J (1979) Introduction à la géologie générale du Portugal. Serviços Geológicos de Portugal, Lisboa, 114 p

    Google Scholar 

  • Riera V, Oms O, Gaete R, Galobart À (2009) The end-Cretaceous dinosaur succession in Europe: the Tremp Basin record (Spain). Palaeogeogr Palaeoclimatol Palaeoecol 283: 160–171

    Google Scholar 

  • Robador A (2005) El Paleoceno e Ilerdiense inferior del Pirineo occidental: Estratigrafía y sedimentología. (PhD dissertation), 456 p, Universidad del País Vasco/EHU

    Google Scholar 

  • Robador A (in press) Geological map of Spain at 1:50000 scale. Sheet 253, Organyà. Edited by the Instituto Geológico y Minero de España IGME

    Google Scholar 

  • Robador A, Zamorano M (1999) Memoria y mapa geológico de España 1:50.000 Hoja de Campo nº 212 (31–10). Instituto Geológico y Minero de España, Madrid, 2ª Serie MAGNA

    Google Scholar 

  • Robador A, Samsó JM, Serra-Kiel J, Tosquella J (1990) Early Paleogene Stratigraphy. In: ITGE (Ed) Introduction to the Early Paleogene of the south Pyrenean basin. Field trip guidebook. First Meeting, I.G.C.P. Project 286 (Early Paleogene Benthos), IUGS-UNESCO, 41–87

    Google Scholar 

  • Rocha RB, Manuppella G, Mouterde R, Ruget C, Zbyszewski G (1981) Carta Geológica de Portugal na escala 1.50 000. Notícia explicativa da folha 19 C—Figueira da Foz. Serviços Geológicos de Portugal, Lisboa, 126 p

    Google Scholar 

  • Rodríguez Estrella T (1977) Síntesis geológica del Prebético de la provincia de Alicante. 1: Estratigrafía. Boletín Geológico y Minero, 88 (3): 183–214

    Google Scholar 

  • Rodríguez-Lázaro J (1985) Los ostracodos del Coniaciense y Santoniense de la Cuenca Vasco-Cantábrica occidental. Tesis doctoral, Univ del Pais Vasco. 527 pp

    Google Scholar 

  • Rodríguez-López JP, Meléndez N, De Boer PL, Soria AR (2008) Aeolian sand sea development along the mid-Cretaceous western Tethyan margin (Spain): erg sedimentology and palaeoclimate implications. Sedimentology, 55: 1253–1292. https://doi.org/10.1111/j.1365-3091.2007.00945.x

  • Rodríguez-López JP, Meléndez N, Soria AR, de Boer PL (2009) Reinterpretación estratigráfica y sedimentológica de las formaciones Escucha y Utrillas de la Cordillera Ibérica. Revista de la Sociedad Geológica de España, 22: 3–4

    Google Scholar 

  • Rodríguez-Tovar FJ, Uchman A, Martín-Algarra A (2009) Oceanic Anoxic Event at the Cenomanian–Turonian boundary interval (OAE-2): ichnological approach from the Betic Cordillera, southern Spain. Lethaia, 42: 407–417. https://doi.org/10.1111/j.1502-3931.2009.00159.x

  • Rodríguez Fernández LR, López Olmedo F, Oliveira JT, Medialdela T, Martín-Serrano García Á, Nozal Martín FB (2015) Mapa Geológico de la Península Ibérica, Baleares y Canarias a escala 1:1.000.000, edición 2015. Instituto Geológico y Minero de España, Madrid

    Google Scholar 

  • Romariz C (1960) Estudo geológico e petrográfico da área tifónica de Soure. Comunicações dos Serviços Geológicos de Portugal 44: 1–223

    Google Scholar 

  • Rosales I (1995) La plataforma carbonatada de Castro Urdiales (Aptiense/Albiense, Cantabria). Tesis Doctoral de la Universidad del País Vasco 496 p

    Google Scholar 

  • Rosales I (1999) Controls on carbonate platform evolution on active fault blocks: the Lower Cretaceous Castro Urdiales platform (Aptian-Albian, northern Spain). Journal of Sedimentary Research, 69: 447–465

    Google Scholar 

  • Rosales I, Fernández-Mendiola PA, García-Mondéjar J (1994) Carbonate depositional sequence development on active fault blocks: the Albian in the Castro Urdiales area, northern Spain. Sedimentology, 41: 861–882

    Google Scholar 

  • Rosell J (1963) Sobre la existencia de la discordancia precenomaniense en el Prepirineo de la provincia de Lérida. Notas y Comun. Inst. Geol. y Minero de España, 72: 71–80

    Google Scholar 

  • Rosell J (1967) Estudio geológico del sector del Prepirineo comprendido entre los ríos Segre y Noguera Ribagorzana (prov. de Lérida). Pirineos, 21: 9–214

    Google Scholar 

  • Rosell J (1991) Geological map of Spain at 1:50000 scale. Sheet 252, Tremp. Edited by the Instituto Geológico y Minero de España IGME

    Google Scholar 

  • Rosell J, Obrador A, Pons JM (1972) Significación sedimentológica y paleogeográfica del nivel arcilloso con corales del Senoniense superior de los alrededores de Pobla de Segur (prov. De Lérida). Acta Geológica Hipánica, VII (1): 7–11

    Google Scholar 

  • Rosell J, Linares R, Llompart C (2001) El «Garumniense» prepirenaico. Rev Soc Geol. España, 14(1–2), 47–56

    Google Scholar 

  • Rosenbaum G, Lister GS, Duboz C (2002) Reconstruction of the tectonic evolution of the western Mediterranean since the Oligocene. In: Rosenbaum G, Lister GS 2002. Reconstruction of the evolution of the Alpine-Himalayan Orogen. Journal of the Virtual Explorer, 8: 107–130

    Google Scholar 

  • Ruiz-Omeñaca JI, Vullo R, Bernárdez E, Buscaloni ÁD (2009) El primer resto directo de terópodo del Cenomaniense de la Península Ibérica: el diente de Limanes (Oviedo, Asturias). Geogaceta 47: 29–32

    Google Scholar 

  • Ruiz-Ortiz PA (1980) Análisis de facies del Mesozoico de las Unidades Intermedias (entre Castril—provincia de Granada- y Jaén). PhD. Thesis, Universidad de Granada, 372 p

    Google Scholar 

  • Ruiz-Ortiz PA, de Gea GA, Castro JM (2006) Timing of canyon-fed turbidite deposition in a rifted basin: The Early Cretaceous turbidite complex of the Cerrajón Formation (Subbetic, Southern Spain). Sedimentary Geology 192: 141–166

    Google Scholar 

  • Ríos JM (1951) Análisis estratigráfico y tectónico de una parte del valle del Segre, en la provincia de Lérida (la zona de Coll de Nargó). Bol Inst Geol Min. De España, 63: 561–656

    Google Scholar 

  • Salas R, Casas A (1993) Mesozoic extensional tectonics, stratigraphy, and crustal evolution during the Alpine cycle of the eastern Iberian basin. Tectonophysics, 228: 33–55

    Google Scholar 

  • Salas R, Guimerà J, Mas R, Martín-Closas C, Meléndez A, Alonso A (2001) Evolution of the Mesozoic Central Iberian Rift System and its Cenozoic inversion (Iberian Chain). In: PA Ziegler, W Cavazza, AFH Robertson, S Crasquin-Soleau (eds), Peri-Tethys Memoir 6: Peri-Tethyan Rift/Wrench Basins and Passive Margins. Mémoires du Muséum National d’Histoire Naturelle, Paris, 186: 145–185

    Google Scholar 

  • Samsó JM, García-Senz J, Mateos I, Blázquez JJ, Tallada A, Copons R (2012a) El Pont de Suert 213-2-2, 1:25000, Institut Geològic de Catalunya

    Google Scholar 

  • Samsó JM, García-Senz J, Mateos I, Tallada A, Copons R (2012b) Areny 251-2-1, 1:25000, Institut Geològic de Catalunya

    Google Scholar 

  • Sanders D (1998) Upper Cretaceous “Rudist Formations”. Geol Paläont Mitt. Innsbruck, 23: 37–59

    Google Scholar 

  • SantamarIa-Zabala R (1991) Ammonoideos del Cretácico superior de la plataforma Nordcastellana y parte de la Cuenca Navarro-Cántabra. Paleontologia y Bioestratigrafia. Tesis Doctoral Univ. Autónoma de Barcelona. 397 pp, 19 láms

    Google Scholar 

  • Santisteban C de, Suñer M (2003) Rastros de huellas de dinosaurios en carbonatos inter-supramareales del Cretácico superior, cuenca ibérica suroccidental, Valencia, España. En: Dinosaurios y otros reptiles mesozoicos de España. Instituto de Estudios Riojanos, 26: 147–160

    Google Scholar 

  • Saporta M de (1894) Flore fossile du Portugal. Nouvelles contributions à la flore mésozoïque accompagnées d’une notice stratigraphique par P. Choffat. Direction des Services Géologiques du Portugal, Lisbonne, 288 p

    Google Scholar 

  • Saura E, Ardèvol i Oró L, Teixell A, Vergés J (2016) Rising and falling diapirs, shifting depocenters, and flap overturning in the Cretaceous Sopeira and Sant Gervàs subbasins (Ribagorça Basin, southern Pyrenees). Tectonics, 35: 638–662

    Google Scholar 

  • Sauvage H (1897-1898). Vertébrés fossiles du Portugal. Contributions à l’étude des poissons et des reptiles du Jurassique et du Crétacé. Direction des Travaux Géologiques du Portugal, Lisbonne, 47 p

    Google Scholar 

  • Schott JJ, Peres A (1987) Paleomagnetism of the Lower Cretaceous redbeds from northern Spain, evidence for a multistage acquisition of magnetization. Tectonophysics, 139: 239–253

    Google Scholar 

  • Schroeder R (1973) El corte de Aulet (prov. de Huesca) evolución de las orbitolinas en el límite del Cretaceo inferior superior. XIII col. Europ. de micropaleontología, España: 141–149

    Google Scholar 

  • Schwenkte W, Wiedmann J (1985) Oberkreide-Entwicklung und Diapirismus im Estella-Becken (Nordspanien). Facies, 12: 1–74

    Google Scholar 

  • Schwentke W, Kuhnt W (1992) Subsidence history and continental margin evolution of the Western Pyrenean and Basque Basins. Palaeogeography, Palaeoclimatology, Palaeoecology, 95: 297–318

    Google Scholar 

  • Scott RW (2014) A Cretaceous chronostratigraphic database: construction and applications. Carnets de Géologie [Notebooks on Geology], 14 (2): 15–37

    Google Scholar 

  • Segura M, García A, García-Hidalgo FJ, Carenas B (1993a) The Cenomanian Turonian transgression in the Iberian Ranges (Spain): depositional sequences and the Cenomanian Turonian boundary. Cretaceous Research, 14: 519–529

    Google Scholar 

  • Segura M, García-Hidalgo JF, Carenas B, García A (1993b) Upper Cenomanian Platform from central Eastern Iberian (Spain). In: Cretaceous Carbonate Platforms, Simo JAT, Scott BW, Masse JP (eds). American Association of Petroleum Geologists Memoir, 56: 283–296

    Google Scholar 

  • Segura M, García A, García-Hidalgo JF, Carenas B, Ruiz G, Gil J (1996) Relaciones genéticas entre las unidades litoestratigráficas del Cretácico medio y superior de la Cordillera ibérica occidental. Geogaceta, 20 (1): 54–57

    Google Scholar 

  • Segura M, García-Hidalgo JF, García A, Ruiz Cebrián G, Carenas B (1999) El Cretácico de la zona de intersección del sistema Central con la Cordillera Ibérica: unidades litoestratigráficas y secuencias deposicionales. In: Libro homenaje a José Ramírez del Pozo, Asociación de Geólogos y Geofísicos Españoles del Petróleo, 129–139

    Google Scholar 

  • Segura M, Carenas B, Gil J, García-Hidalgo JF, García A (2001) Anatomy of the carbonate bodies in relation to their position with respect to the maximun transgressive in the 2nd-order Cycles of the Upper Cretaceous from the Iberian Range. Géologie Méditerranée, 28: 163–168

    Google Scholar 

  • Segura M, García-Hidalgo JF, Carenas B, Gil J, García A (2004) Evolución paleogeográfica de la Cuenca Ibérica en el Cretácico Superior. Geogaceta, 36: 103–106

    Google Scholar 

  • Segura M, Barroso-Barcenilla F, Cambra-Moo O, Pérez-García A, Torices A (2010) Introduction to the new Cenomanian palaeontological site “Algora” (Upper Cretaceous, Guadalajara, Spain). Carnets de Géologie 7 (Strati 2010), 232–233

    Google Scholar 

  • Segura M, Barroso-Barcenilla F, Berrocal-Casero M, Castanera D, García-Hidalgo JF, Santos VF (2016) A new Cenomanian vertebrate tracksite at Tamajón (Guadalajara, Spain): Palaeoichnology and palaeoenvironmental implications, Cretaceous Research, Volume 57, January 2016, Pages 508–518, ISSN 0195-6671. https://doi.org/10.1016/j.cretres.2015.04.011

  • Segura M, Barroso-Barcenilla F, Callapez P, García-Hidalgo JF, Gil-Gil J, (2014) Depositional sequences and ammonoid assemblages in the upper Cenomanian-lower Santonian of the Iberian Peninsula (Spain and Portugal). Geologica Acta, 12(1): 19–27. https://doi.org/10.1344/105.000002056

  • Sharpe D (1849) On Tylostoma, a proposed genus of gasteropodous molluscs. Quarterly Journal of the Geological Society of London 5: 375–380

    Google Scholar 

  • Sharpe D (1850a) Remarks on the genus Nerinea, with an account of the species found in Portugal. Quarterly Journal of the Geological Society of London 6: 101–115

    Google Scholar 

  • Sharpe D (1850b) On the Secondary District of Portugal which lies on the North of the Tagus. Quarterly Journal of the Geological Society of London 6: 135–201

    Google Scholar 

  • Sibuet J-C, Srivastava SP, Spakman W (2004) Pyrenean orogeny and plate kinematics. Journal of Geophysical Research 109, B08104. http://dx.doi.org/10.1029/2003JB002514

  • Simó A (1985) Secuencias deposicionales del Cretácico superior de la Unidad del Montsec. (Pirineo Central). Tesis Doct Univ Barcelona, 326 p

    Google Scholar 

  • Simó A (1986) Carbonate platform deposition sequences, Upper Cretaceous, south-central Pyrenees (Spain). Tectonophysics, 129: 203–231

    Google Scholar 

  • Simó A (1989) Upper Cretaceous platform-to-basin depositional sequence development, Tremp basin, south-central Pyrenees, Spain, in PD. Crevello, JL Wilson, JF Sarg and JF Read eds, Controls on carbonate platforms and basin development: SEPM Special Publication, 44: 365–378

    Google Scholar 

  • Simó A (2004) El Cretácico Superior de la Unidad Surpirenaica Central. In: Vera JA (ed) Geología de España. SGE-IGME, Madrid, 296–299

    Google Scholar 

  • Skelton PW, Spicer RA, Kelley SP, Gilmour I (2003) The Cretaceous World. The Open University, Cambridge University Press. 360 p

    Google Scholar 

  • Soares AF (1960) Considerações sobre as Exogyra columba Lam., Exogyra flabellata Gold. e Exogyra olisiponensis Sharpe do Cretácico das regiões de Coimbra e Figueira da Foz. Memórias e Notícias 49: 21–40

    Google Scholar 

  • Soares AF (1966) Estudo das formações pós-jurássicas das regiões de entre Sargento-Mor e Montemor-o-Velho (margem direita do Rio Mondego). Memórias e Notícias 62: 1–343

    Google Scholar 

  • Soares AF (1968a) Estudo da distribuição dos Ostreídeos do Cretácico Superior (Cenomaniano superior e Turoniano inferior) na região entre Sargento-Mor e Montemor-o-Velho (Margem direita do Rio Mondego). Revista de Ciências Geológicas, Série A 1: 55–72

    Google Scholar 

  • Soares AF (1968b) Contribution à 1’étude de la distribution des échinides du Crétacé Supérieur du Portugal. Les échinides de la région entre Sargento-Mor et Montemor-o-Velho. Memórias e Notícias 64: 1–20

    Google Scholar 

  • Soares AF (1972) Contribuição para o estudo do Cretácico em Portugal (o Cretácico Superior da Costa de Arnes). Memórias e Notícias 74: 1–56

    Google Scholar 

  • Soares AF (1974) O Belasiano. Definição. Monografia não publicada, Coimbra, 101 p

    Google Scholar 

  • Soares AF (1980) A «Formação Carbonatada» na região do Baixo Mondego. Comunicações dos Serviços Geológicos de Portugal 66: 99–109

    Google Scholar 

  • Soares AF, Devriès A (1967) Un Genre Nouveau de la Famille des Periscomidae dans le Crétacé du Portugal. Memórias e Notícias 63: 55–63

    Google Scholar 

  • Soares AF, Marques LF (1973) Os equinídeos cretácicos da região do Rio Mondego (Estudo sistemático). Memórias e Notícias 75: 1–46

    Google Scholar 

  • Soares AF, Reis, RP (1984) Considerações sobre as unidades litostratigráficas post-jurássicas na região do Baixo Mondego. Livro Homenagem Orlando Ribeiro, 1, Centro de Estudos Geográficos da Universidade de Lisboa, Lisboa, 183–202

    Google Scholar 

  • Soares AF, Barbosa BP, Reis RP (1982) Esboço de enquadramento cronostratigráfico das unidades líticas pós-jurássicas da Orla Meso-Cenozóica Ocidental entre os paralelos de Pombal e Aveiro. Memórias e Notícias 93: 77–91

    Google Scholar 

  • Soares AF, Reis RP, Daveau S (1983) Tentativa de correlação das unidades litostratigráficas da região do Baixo Mondego com as das bacias de Lousã e Arganil. Memórias e Notícias 96: 3–20

    Google Scholar 

  • Soares AF, Marques JF, Rocha RB (1985) Contribuição para o conhecimento geológico de Coimbra. Memórias e Notícias 100: 41–72

    Google Scholar 

  • Soares AF, Lapa, M, Marques JF (1986) Contribuição para o conhecimento da litologia das unidades meso-cenozóicas da Bacia Lusitaniana a Norte do “acidente” da Nazaré (Sub-zona Setentrional). Memórias e Notícias 102: 23–41

    Google Scholar 

  • Soares AF, Marques JF, Sequeira JD (2007) Carta Geológica de Portugal, escala 1.50 000. Notícia explicativa da folha 19 D—Coimbra-Lousã. Departamento de Geologia, Instituto Nacional de Engenharia, Tecnologia e Inovação, Lisboa, 71 p

    Google Scholar 

  • Souquet P (1967) Le Crétacé supérieur sud-pyrénéen en Catalogne, Aragon et Navarre. Thèse Doctorat. Faculté Sciences Toulouse, 529 p

    Google Scholar 

  • Souquet P (1984) Les cycles majeurs du Crétacé de la Paléomarge Ibérique dans les Pyrénées. Strata, Univ. Toulouse III, 1: 47–70

    Google Scholar 

  • Souquet P (1985) The Black Flysch (Albian-early Cenomanian) from the Pyrenees. [Le Groupe du Flysch Noir (Albo-Cénomanien) dans les Pyrénées]. Bulletin du Centre de Recherches Exploration-Production Elf-Aquitaine, 9: 183–252

    Google Scholar 

  • Souquet P, Peybernès B (1991) Stratigraphie séquentielle du cycle albien dans les Pyrénées franco-espagnoles. Bulletin du Centre de Recherches Exploration-Production Elf-Aquitaine, 15: 195–213

    Google Scholar 

  • Souquet P, Debroas EJ, Boirie JM, Pons P, Fixari C, Roux JC, Dol J, Thieuloy JP, Bonnemaison M, Manivit H, Peybernes B (1985) Le Groupe du Flysch Noir (Albo-Cénomanien) dans les Pyrénées. Bulletin du Centre de Recherche Exploration-Production Elf-Aquitaine, 9: 183–252

    Google Scholar 

  • Srivastava SP, Roest WR, Kovacs LC, Oakey G, Lévesque S, Verhoef J, Macnab R (1990) Motion of Iberia since the Late Jurassic: Results from detailed aeromagnetic measurements in the Newfoundland basin. Tectonophysics 184: 229–260

    Google Scholar 

  • Srivastava SP, Sibuet JC, Cande S, Roest WR, Reid ID (2000) Magnetic evidence for slow seafloor spreading during the formation of the Newfoundland and Iberian margins. Earth and Planetary Science Letters 182: 61–76. https://doi.org/10.1016/s0012-821x(00)00231-4

  • Stampfli GM, Kozur HW (2006) Europe from the Variscan to the Alpine cycles. In:Gee DG, Stephenson RA (Eds), European Lithosphere Dynamics. GeologicalSociety of London, Memoir 32, pp 57–82

    Google Scholar 

  • Steuber T, Rauch M, Masse JP, Graaf J, Malkoc M (2005) Low-latitude seasonality of Cretaceous temperatures in warm and cold episodes. Nature, Letters 473: 1341–1344

    Google Scholar 

  • Séguret M (1972) Etude tectonique des nappes et séries décollées de la partie centrale du versant sud des Pyrénées. Publ. Ustela, série Géol. Struct., 2, Montpellier, 155 p

    Google Scholar 

  • Tavani S (2012) Plate kinematics in the Cantabrian domain of the Pyrenean orogen. Solid Earth, 3: 265–292. https://doi.org/10.5194/se-3-265-2012

  • Teixeira C (1948) Flora mesozóica portuguesa, 1. Memórias dos Serviços Geológicos de Portugal, 119 p

    Google Scholar 

  • Teixell A, Muñoz JA (2000) Evolución tectono-sedimentaria del Pirineo meridional durante el Terciario: una síntesis basada en la transversal del río Noguera Ribagorçana: Revista Sociedad Geológica España, 13, 2: 251–264

    Google Scholar 

  • Torices A, Barroso-Barcenilla F, Cambra-Moo O, Pérez-García A, Segura M (2012) Palaeontological and palaeobiogeographical implications of the new Cenomanian site “Algora” (Upper Cretaceous, Guadalajara, Spain). Cretaceous Research, 37: 231–239

    Google Scholar 

  • Tugend J (2013) Rôle de l’hyper-extension lors de la formation de systèmes de rift et implication pour les processus de réactivation et de formation des orogènes: l’exemple du Golfe de Gascogne et des Pyrénées. Thèse de Doctorat de l’Université de Strasbourg, 288 p

    Google Scholar 

  • Tugend J, Manatschal G, Kusznir NJ, Masini E, Mohn G, Thinon L (2014) Formation and deformation of hyperextended rift systems: Insights from rift domain mapping in the Bay of Biscay-Pyrenees. Tectonics 33: 1239–1276. https://doi.org/10.1002/2014tc003529

  • Ubide T, Gale C, Arranz E, Lago M, Larrea P, Tierz P, Sanz T (2012): Enriched mantle source for the Cretaceous alkaline lamprophyres from the Catalonian Coastal Ranges (NE Spain). Mineralogical Magazine 76 (6), 2475

    Google Scholar 

  • Ubide T, Wijbrans JR, Gale C, Arranz E, Lago M, Larrea P (2014) Age of the Cretaceous alkaline magmatism in northeast Iberia: implications for the Alpine cycle in the Pyrenees. Tectonics 33 (7): 1444–1460

    Google Scholar 

  • Ullastre J, Masriera A (2006) El anticlinal de Bóixols-Muntanya de Nargó: consideraciones estratigráficas y estructurales basadas en una nueva cartografía geológica (Pirineo catalán, España). Treb Mus Geol. Barcelona, 14: 5–35

    Google Scholar 

  • Ullastre J, Durand Delga M, Masriera A (1987) Argumentos para establecer la estructura del sector del pico de Pedraforca a partir del análisis comparativo del Cretácico de este macizo con el de la región de Sallent (Pirineo catalán). Boletín Geológico y Minero 98 (1): 3–22

    Google Scholar 

  • Vandenberg J (1980) New paleomagnetic data from the Iberian Peninsula. Geologie en Mijnbouw, 59: 49–60

    Google Scholar 

  • Vera JA (2001) Evolution of the South Iberian Continental Margin. In: Ziegler PA, Cavaza W, Robertson AHF, Crasquin-Soleau S (Eds), Peri-Tethys Memoir 6: Peri-Tethyan Rift/Wrench Basins and Passive Margins. Mémoires du Muséum National d’Histoire Naturelle, Paris, 186: 109–143. Paris

    Google Scholar 

  • Vera JA (coord.), Arias C, García-Hernández M, López-Garrido AC, Martín-Algarra A, Martín-Chivelet J, Molina JM, Rivas P, Ruiz-Ortin PA, Sanz de Galdeano C, Vilas L (2004) Las Zonas Externas Béticas y el Paleomargen Sudibérico. In: Geología de España (JA Vera ed) pp 354–361. SGE-IGME, Madrid.Vera JA, García-Hernández M, López-Garrido AC, Comas MC, Ruiz-Ortiz PA, Martín-Algarra A 1982. El Cretácico de la Cordillera Bética. In: El Cretácico de España, Universidad Complutense de Madrid, 515–632

    Google Scholar 

  • Vera JA, Molina JM (1999) La formación Capas Rojas: caracterización y génesis. Estudios Geológicos, 55: 45–66

    Google Scholar 

  • Vera JA, García-Hernández M, López-Garrido AC, Comas MC, Ruiz-Ortiz PA, Martín-Algarra A (1982) El Cretácico de la Cordillera Bética. In: García A (ed), El Cretácico de España, Universidad Complutense de Madrid, 515–632

    Google Scholar 

  • Vergés J, Fernàndez M (2006) Ranges and basins in the Iberian Peninsula: their contribution to the present topography. In: Gee DG, Stephenson RA (eds). European Lithosphere Dynamics. Geological Society, London, Memoirs, 32: 223–234

    Google Scholar 

  • Vicens E, López G, Obrador A (1998) Facies succession, biostratigraphy and rudist faunas of Coniacian to Santonian platform deposits in the Sant Corneli anticline (Southern Central Pyrenees). Geobios 31: 403–427

    Google Scholar 

  • Vicens E, Ardèvol L, López-Martínez N, Arribas ME (2004) Rudist biostratigraphy in the Campanian-Maastrichtian of the south-central Pyrenees, Spain. CFS Courier Forschungsinstitut Senckenberg 247: 113–127

    Google Scholar 

  • Vicente-Bravo JC, Robles S (1991) Geometría y modelo deposicional de la secuencia Sollube del Flysch Negro (Albiense medio, norte de Bizkaia). Geogaceta, 10: 69–72

    Google Scholar 

  • Vicente-Bravo JC, Robles S (1995) Large-scale mesotopographic bedforms from the Albian Black Flysch, northern Spain: characterization, setting and comparison with recent analogues. In: Atlas of Deep Water Environments: architectural style in turbidite systems, Pickering KT, Hiscott RN, Kenyon NH, Ricci Lucchi F, Smith RDA (eds), Chapman & Hall, pp 216–226

    Google Scholar 

  • Vidal LM (1874) Datos para el conocimiento del terreno Garumniense de Catalunya. Boletín de la Comisión del Mapa Geológico de España, 1: 209–247

    Google Scholar 

  • Vila B, Oms O, Marmi J, Galobart À (2008) Tracking Fumanya footprints (Maastrichtian, Pyrenees): historical and ichnological overview. Oryctos 8: 150–130

    Google Scholar 

  • Vila B, Oms O, Fondevilla V, Gaete R, Galobart Á, Riera V, Canudo JI (2013) The latest succession of dinosaur tracksites in Europe: hadrosaur ichnology, track production and palaeoenvironments. PLoS ONE 8(9): e72579. https://doi.org/10.1371/journal.pone.0072579

  • Vilas L, Mas R, García A, Arias C, Alonso A, Meléndez N, Rincón R (1982) La Cordillera Ibérica Suroccidental. In: García A, ed, El Cretácico de España, Universidad Complutense de Madrid, p 457–514

    Google Scholar 

  • Vilas L, Dabrio CJ, Peláez JR, García-Hernández M (2001) Dominios sedimentarios generados durante el período extensional Cretácico Inferior entre Cazorla y Hellín (Béticas externas). Su implicación en la estructura actual. Revista de la Sociedad Geológica de España 14 (1–2): 113–122

    Google Scholar 

  • Vilas L, Martín Chivelet J, Arias C (2003) Quantification of subsidence in the Cretaceous carbonate platforms of the Prebetic Domain (Jumilla-Yecla Region, Spain).Paleogeography, Paleoclimatology, Paleoecology, 200: 107–129. http://dx.doi.org/10.1016/S0031-0182(03)00447-4

  • Vissers RLM, Meijer PTh (2012a) Mesozoic rotation of Iberia: subduction in the Pyrenees? Earth-Science Reviews 110: 93–110. https://doi.org/10.1016/j.earscirev.2011.11.001

  • Vissers RLM, Meijer PTh (2012b) Iberian plate kinematics and Alpine collision in the Pyrenees. Earth-Science Reviews 114 (2012) 61–83. https://doi.org/10.1016/j.earscirev.2012.05.001

  • Voigt S, Hay WW, Höfling R, DeConto RM (1999) Biogeographic distribution of late Early to Late Cretaceous rudist-reefs in the Mediterranean as climate indicators, in Barrera E, Johnson CC eds. Evolution of the Cretaceous Ocean-Climate System: Boulder, Colorado, Geological Society of America Special Paper 332

    Google Scholar 

  • Voigt S, Gale AS, Flögel S (2004) Midlatitude shelf seas in the Cenomanian—Turonian greenhouse world: temperature evolution and North Atlantic circulation. Paleoceanography, 19, https://doi.org/10.1029//2004pa001015

  • Voigt S, Gale AS, Voigt T (2006) Sea-level change, carbon cycling and palaeoclimate during the late Cenomanian of northwest Europe; an integrated palaeoenvironmental analysis. Cretaceous Research, 27 (6): 836–858

    Google Scholar 

  • Voort HB (1964) Zum Flyschproblem in den Westpyrenäen. Geologische Rundschau, 53 (1): 220–233

    Google Scholar 

  • Vullo R, Bernárdez E, Buscalioni AD (2009) Vertebrates from the middle?–late Cenomanian La Cabaña Formation (Asturias, northern Spain): Palaeoenvironmental and palaeobiogeographic implications. Palaeogeography, Palaeoclimatology, Palaeoecology 276 (2009) 120–129. https://doi.org/10.1016/j.palaeo.2009.03.004

  • Walker JD, Geissman JW, Bowring SA, Babcock LE (2013) The Geological Society of America Time Scale, GSA Bulletin, 125, no. 3/4, 259–272, https://doi.org/10.1130/b30712.1

  • Wiedmann J, Boess J (1984) Ammonitenfunde aus der Biskaya-Synkline (Nordspanien). Kreidegliederung und Alter des Kreide-Vulkanismus. Eclogae Geologica Helvetica, 77: 483–510

    Google Scholar 

  • Wiedmann J, Reitner J, Engeser T, Schwentke W (1983) Plattentektonik, Fazies und Subsidenzgeschichte des basko-kantabrischen Kontinentalrandes während Kreide und Alttertiär. Zitteliana, 10: 207–244

    Google Scholar 

  • Wiese F (1997) Das Turon und Unter-Coniac im Nordkantabrischen Becken (Provinz Kantabrien, Nordspanien): Faziesentwicklung, Bio-, Event- und Sequenzstratigraphie. Berliner geowissenschaftliche Abhandlungen, 24, 131 p

    Google Scholar 

  • Wiese F, Wilmsen M (1999) Sequence stratigraphy in the Cenomanian to Campanian of the North Cantabrian Basin (Cantabria, Spain). Neues Jahrbuch für Geologie und Paläontologie, Abhandlungen, 212: 131–173

    Google Scholar 

  • Willems H (1985) Marine Uppermost Cretaceous and Garumnian facies in the region of Bóixols—Coll de Nargó anticline (Prov. Lérida. Spain). Estudios geológicos 41: 17–24

    Google Scholar 

  • Wilmsen M (1997) Das Oberalb und Cenoman im Nordkantabrischen Becken (Provinz Kantabrien, Nordspanien): Faziesentwicklung, Bio- und Sequenzstratigraphie, Berliner geowissenschaftliche Abhandlungen, 23, 197 p

    Google Scholar 

  • Wilmsen M (2000) Evolution and demise of a mid-Cretaceous carbonate shelf, the Altamira Limestones (Cenomanian) of northern Cantabria (Spain). Sedimentary Geology, 133: 195–226

    Google Scholar 

  • Wilmsen M, Wiese F, Ernst G (1996) Facies development, events and sedimentary sequences in the Albian to Maastrichtian of the Santander depositional area, northern Spain. Mitteilungen aus dem Geologisch-Paläontologischen Institut der Universität Hamburg 77: 337–367

    Google Scholar 

  • Wilson RCL (1979) A reconnaissance study of Upper Jurassic sediments of the Lusitanian Basin. Ciências da Terra 5, 53–84

    Google Scholar 

  • Wilson RCL (1988) Mesozoic development of the Lusitanian Basin, Portugal. Revista de la Sociedad Geológica de España 1: 393–407

    Google Scholar 

  • Wilson RCL, Hiscott R, Willis M, Gradstein F (1989) The Lusitanian Basin of west central Portugal, Mesozoic and Tertiary tectonic, stratigraphic and subsidence history. In: Tankard A, Balkwill H (Eds), Extensional tectonics and stratigraphy of the North Atlantic margins. AAPG Memoir 46, pp 341–361

    Google Scholar 

  • Zbyszewski G, Jesus A (1954) Contribution à la connaissance du Complexe Basaltique des environs de Lisbonne. Comptes Rendus de la 19ème section du Congrès Géologique International 17, 213–221

    Google Scholar 

  • Ziegler PA, Cloetingh S, Guiraud R, Stampfli GM (2001) Peri-Tethyan platforms: constraints on dynamics of rifting and basin inversion. In: Ziegler PA, Cavazza W, Robertson AHF, Crasquin-Soleau S (eds) PeriTethys Memoir 6: Peri-Tethyan Rift/Wrench Basins and Passive Margins. Mémoires du Muséum national d’Histoire naturelle, Paris, 186: 9–49

    Google Scholar 

  • van der Voo R (1969) Paleomagnetic evidence for the rotation of the Iberian Peninsula. Tectonophysics, 7: 5–56

    Google Scholar 

  • van Hinsbergen DJJ, Spakman W, Vissers RLM, van der Meer DG (2017) Comment on “Assessing Discrepancies Between Previous Plate Kinematic Models of Mesozoic Iberia and Their Constraints” by Barnett‐Moore et al. Tectonics 36, pp 3277–3285. https://doi.org/10.1002/2016TC004418.

  • van Hoorn B (1970) Sedimentology and Paleogeography of an upper Cretaceous turbidite basin in the South-Central Pyrenees, Spain. Leidse Geol Meded, 45: 73–154

    Google Scholar 

  • van Veen GW (1969) Geological investigation in the region west of Caravaca, South-Eastern Spain. Thesis, Amsterdam Univ. p 143

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to Javier Martín-Chivelet .

Editor information

Editors and Affiliations

Rights and permissions

Reprints and permissions

Copyright information

© 2019 Springer Nature Switzerland AG

About this chapter

Check for updates. Verify currency and authenticity via CrossMark

Cite this chapter

Martín-Chivelet, J. et al. (2019). Late Cretaceous Post-Rift to Convergence in Iberia. In: Quesada, C., Oliveira, J. (eds) The Geology of Iberia: A Geodynamic Approach. Regional Geology Reviews. Springer, Cham. https://doi.org/10.1007/978-3-030-11295-0_7

Download citation

Publish with us

Policies and ethics