Baddeley, A. (1986) Working Memory. Oxford: Clarendon Press.
Google Scholar
Barkley, R. A. (1997) Behavioral inhibition, sustained attention, and executive functions: Constructing a unifying theory of ADHD. Psychological Bulletin
121, 65–94.
PubMed
Google Scholar
Brodmann, K. (1909) Vergleichende Lokalisationslehre der Grosshirnrinde in ihren Prinzipien dargestellt auf Grund des Zellenbaues. Leipzig: Barth.
Google Scholar
Brunia, C. H. M., Haagh, S. A. V. M. &; Scheirs, J. G. M. (1985)Waiting to respond: Electrophysiological measurements in man during preparation for a voluntary movement. In Motor Behavior (edited by Heuer, H., Kleinbeck, U. &; Schmidt, K.-H.) pp. 35–78. New York: Springer.
Google Scholar
Butler, A. B. (1994) The evolution of the dorsal pallium in the telencephalon of amniotes: Cladistic analysis and a new hypothesis. Brain Research Reviews
19, 66–101.
PubMed
Google Scholar
Compte, A., Brunel, N., Goldman-Rakic, P. S. &; Wang, X.-J. (2000) Synaptic mechanisms and network dynamics underlying spatial working memory in a cortical network model. Cerebral Cortex
10, 910–923.
PubMed
Google Scholar
Desimone, R. &; Duncan, J. (1995) Neural mechanisms of selective visual attention. Annual Review of Neuroscience
18, 193–222.
PubMed
Google Scholar
Edelman, G. M. (1987) Neural Darwinism. New York: Basic Books.
Google Scholar
Felleman, D. J. &; van Essen, D. C. (1991) Distributed hierarchical processing in the primate cerebral cortex. Cerebral Cortex
47, 1047–3211.
Google Scholar
Finlay, B. L. &; Darlington, R. B. (1995) Linked regularities in the development and evolution of mammalian brains. Science
268, 1578–1584.
PubMed
Google Scholar
Flechsig, P. (1901) Developmental (myelogenetic) localisation of the cerebral cortex in the human subject. Lancet
2, 1027–1029.
Google Scholar
Flechsig, P. (1920) Anatomie des Menschlichen Gehirns und Rückenmarks auf Myelogenetischer Grundlage. Leipzig: Thieme.
Google Scholar
Funahashi, S., Bruce, C. J. &; Goldman-Rakic, P. S. (1989) Mnemonic coding of visual space in the monkey's dorsolateral prefrontal cortex. Journal of Neurophysiology
61, 331–349.
PubMed
Google Scholar
Fuster, J. M. (1973) Unit activity in prefrontal cortex during delayed-response performance: Neuronal correlates of transient memory. Journal of Neurophysiology
36, 61–78.
PubMed
Google Scholar
Fuster, J. M. (1997a) Network memory. Trends in Neuro-Sciences
20, 451–459.
Google Scholar
Fuster, J. M. (1997b) The Prefrontal Cortex-Anatomy Physiology, and Neuropsychology of the Frontal Lobe. Philadelphia: Lippincott-Raven.
Google Scholar
Fuster, J. M. (2001) The prefrontal cortex-An update: Time is of the essence. Neuron
30, 319–333.
PubMed
Google Scholar
Fuster, J. M. &; Alexander, G. E. (1971) Neuron activity related to short-term memory. Science
173, 652–654.
PubMed
Google Scholar
Fuster, J. M., Bauer, R. H. &; Jervey, J. P. (1982) Cellular discharge in the dorsolateral prefrontal cortex of the monkey in cognitive tasks. Experimental Neurology
77, 679–694.
PubMed
Google Scholar
Fuster, J. M., Bauer, R. H. &; Jervey, J. P. (1985) Functional interactions between inferotemporal and prefrontal cortex in a cognitive task. Brain Research
330, 299–307.
PubMed
Google Scholar
Fuster, J. M., Bodner, M. &; Kroger, J. K. (2000) Cross-modal and cross-temporal association in neurons of frontal cortex. Nature
405, 347–351.
PubMed
Google Scholar
Gibson, K. R. (1991) Myelination and behavioral development: A comparative perspective on questions of neoteny, altriciality and intelligence. In Brain Maturation and Cognitive Development (edited by Gibson, K. R. &; Petersen, A. C.) pp. 29–63. New York: Aldine de Gruyter.
Google Scholar
Giedd, J. N., Blumenthal, J., Jeffries, N. O., Castellanos, F. X., Liu, H., Zijdenbos, A., Paus, T., Evans, A. C. &; Rapaport, J. L. (1999) Brain development during childhood and adolescence:A longitudinal MRI study. Nature Neuroscience
2, 861–863.
PubMed
Google Scholar
Huttenlocher, P. R. (1979) Synaptic density in human frontal cortex-Developmental changes and effects of aging. Brain Research
163, 195–205.
PubMed
Google Scholar
Huttenlocher, P. R. (1990) Morphometric study of human cerebral cortex development. Neuropsychologia
28, 517–527.
PubMed
Google Scholar
Jerison, H. J. (1990) Fossil brains and the evolution of the neorcortex. In The Neocortex: Ontogeny and Phylogeny (edited by Finlay, B. L., Innocenti, G. &; Scheich, H.) pp. 5–19. New York: Plenum Press.
Google Scholar
Jernigan, T. L. &; Tallal, P. (1990) Late childhood changes in brain morphology observable with MRI. Developmental Medicine and Child Neurology
32, 379–385.
PubMed
Google Scholar
Jones, E. G. &; Powell, T. P. S. (1970) An anatomical study of converging sensory pathways within the cerebral cortex of the monkey. Brain
93, 793–820.
PubMed
Google Scholar
Luria, A. R. (1966) Higher Cortical Functions in Man. New York: Basic Books.
Google Scholar
Miller, E. K., Erickson, C. A. &; Desimone, R. (1996) Neural mechanisms of visual working memory in the prefrontal cortex of the macaque. Journal of Neuroscience
16, 5154–5167.
PubMed
Google Scholar
Mrzljak, L., Uylings, H. B. M., van Eden, C. G. &; JudÁs, M. (1990) Neuronal development in human prefrontal cortex in prenatal and postnatal stages. In The Prefrontal Cortex: Its Structure, Function and Pathology (edited byUylings, H. B. M., Vaneden, C. G., Debruin, J.P. C., Corner, M. A. &; Feenstra, M. G. P.) pp. 185–222. Amsterdam: Elsevier.
Google Scholar
Niki, H. &; Watanabe, M. (1979) Prefrontal and cingulate unit activity during timing behavior in the monkey. Brain Research
171, 213–224.
PubMed
Google Scholar
Northcutt, G. &; Kaas, J. H. (1995) The emergence and evolution of mammalian neocortex. Trends in Neurosciences
18, 373–379.
PubMed
Google Scholar
Pandya, D. N. &; Yeterian, E. H. (1985) Architecture and connections of cortical association areas. In Cerebral Cortex, Vol. 4 (edited by Peters, A. &; Jones, E. G.) pp. 3–61. New York: Plenum Press.
Google Scholar
Pfefferbaum, A., Mathalon, D. H., Sullivan, E. V., Rawles, J. M., Zipursky, R. B. &; Lim, K. O. (1994) A quantitative magnetic resonance imaging study of changes in brain morphology from infancy to late adulthood. Archives of Neurology
51, 874–887.
PubMed
Google Scholar
Piaget, J. (1952) The Origins of Intelligence in Children. New York: International Universities Press.
Google Scholar
Quintana, J. &; Fuster, J. M. (1999) From perception to action: Temporal integrative functions of prefrontal and parietal neurons. Cerebral Cortex
9, 213–221.
PubMed
Google Scholar
Reiss, A. L., Abrams, M. T., Singer, H. S., Ross, J. L. &; Denckla, M. B. (1996) Brain development, gender and IQ in children: A volumetric imaging study. Brain
119, 1763–1774.
PubMed
Google Scholar
Scheibel, A. B. (1990) Dendritic correlates of higher cognitive function. In Neurobiology of Higher Cognitive Function (edited by Scheibel, A. B. &; Wechsler, A.) pp. 239–270. New York: The Guilford Press.
Google Scholar
Sowell, E. R., Thompson, P. M., Holmes, C. J., Jernigan, T. L. &; Toga, A. W. (1999) In vivo evidence for post-adolescent brain maturation in frontal and striatal regions. Nature Neuroscience
2, 859–861.
PubMed
Google Scholar
Sowell, E. R., Thompson, P. M., Tessner, K. D. &; Toga, A. W. (2001) Mapping continued brain growth and gray matter density reduction in dorsal frontal cortex: Inverse relationships during post adolescent brain maturation. Journal of Neuroscience
21, 8819–8829.
PubMed
Google Scholar
Stephan, H., Frahm, H. &; Baron, G. (1981)Newand revised data on volumes of brain structures in insectivores and primates. Folia Primatologia
35, 1–29.
Google Scholar
van Hoesen, G. W. (1982) The parahippocampal gyrus. Trends in Neurosciences
5, 345–350.
Google Scholar
Yakovlev, P. I. &; Lecours, A. R. (1967). The myelogenetic cycles of regional maturation of the brain. In Regional Development of the Brain in Early Life (edited by Minkowski, A.) pp. 3–70. Oxford: Blackwell.
Google Scholar
Zipser, D., Kehoe, B., Littlewort, G. &; Fuster, J. M. (1993) A spiking network model of short-term active memory. Journal of Neuroscience
13, 3406–3420.
PubMed
Google Scholar