Abott LC (1944) The use of iliac bone in the treatment of ununited fractures. In: Instructional Course Lectures. The American Academy of Orthopaedic Surgeons, Park Ridge, pp 13–22
An HS, Simpson JM, Glover JM, Stephany J (1995) Comparison between allograft plus demineralized bone matrix versus autograft in anterior cervical fusion: a prospective multicenter study. Spine 20:2211–2216
CAS
PubMed
Google Scholar
Arrington ED, Smith WJ, Cambers HG, et al (1996) Complications of iliac crest bone graft harvesting. Clin Orthop 329:300–309
Article
PubMed
Google Scholar
Banwart JA, Asher MA, Hassanein RS(1995) Iliac crest bone graft harvest donor site morbidity. A statistical evaluation. Spine 20:1055–1060
CAS
PubMed
Google Scholar
Baramki GH, Steffen T, Lander P, Chang M, Marchesi D (2000) The efficacy of interconnected porous hydroxyapatite in achieving posterolateral lumbar fusion in sheep. Spine 25:1053–1060
Google Scholar
Bernardt M, Swartz DE, Clothiaux PL, Crowell RR, White AA (1992) Posterolateral lumbar and lumbosacral fusion with and without pedicle screw internal fixation. Clin Orthop 284:109–115
Google Scholar
Boachie-Adjei O, Dendrinos GK, Ogilvie JW, Bradford DS (1991) Management of adult spinal deformity with combined anterior-posterior arthrodesis and Luque-Galveston instrumentation. J Spinal Disord 4:131–141
Google Scholar
Boden SD, Schimandle JH, Hutton WC (1995) An experimental lumbar intertransverse process spinal fusion model. Radiographic, histologic and biomechanical healing characteristics. Spine 20:412–420
Google Scholar
Boden SD, Schimandle JH, Hutton WC et al (1997) In vivo evaluation of a resorbable osteoinductive composite as a graft substitute for lumbar spinal fusion. J Spinal Disord 10:1–11
Google Scholar
Brantigan JW, McAfee PC, Cunningham BW, Wang H, Orbegoso CM (1994) Interbody lumbar fusion using a carbon fiber cage implant versus allograft bone: an investigational study in the Spanish goat. Spine 19:1436–1444
Google Scholar
Bucholz MP, Carlton A, Holmes RE (1994) Interporous hydroxyapatite as a bone graft substitute in tibial plateau fractures. Clin Orthop 240:53–62
Google Scholar
Burchardt H (1983) The biology of bone graft repair. Clin Orthop 174:28–42
PubMed
Google Scholar
Burwell RG (1985) The function of bone marrow in the incorporation of bone graft. Clin Orthop 200:125–141
Google Scholar
Cavagna R, Daculsi G, Bouler JM (1999) Macroporous calcium phosphate ceramic: a prospective study of 106 cases in lumbar spinal fusion. J Long Term Eff Med Implants 9:403–412
Google Scholar
Christensen BF, Laursen M, Gelineck J, Eiskj R, PS Thomsen K, Bunger EC (2001) Interobserver and intraobserver agreement of radiograph interpretation with and without pedicle screw implants. Spine 26:538–544
Google Scholar
Connolly JF, Guse R, Lippiello L et al (1989) Development of an osteogenic bone marrow preparation. J Bone Joint Surg 71:684–691
Google Scholar
Delecrin J, Aguado E, Nguyen JM, Royer J, Passuti N (1997) Influence of local enviroment on incorporation of ceramic for lumbar fusion. Comparison of laminar and Intertransverse fusion in a canine model. Spine 22:1683–1689
Google Scholar
Delecrin J, Deschamps C, Romih M, Heymann D, Passuti N (2001) Influence of bone enviroment on ceramic osteointegration in spinal fusion: comparison of bone—poor and bone rich sites. Eur Spine J 10 (Suppl 2): S110–S113
Article
Google Scholar
Delecrin J, Takahashi S, Gouin F, Passuti N (2000) A synthetic porous ceramic as a bone substitute in the surgical management of scoliosis: a prospective randomized study. Spine 25:563–569
Google Scholar
Dvorac J, Panjabi MM, Chang DG, Theiler R, Crob D (1991) Functional radiographiv diagnosis of the lumbar spine. Flexion–extension and lateral bending. Spine 16:562
CAS
PubMed
Google Scholar
Dvorac J, Panjabi MM, Novotny JE, Chang DG, Crob D (1991) Clinical validation of functional flexion–extension roentgenograms of the lumbar spine. Spine 16:943
Google Scholar
Enneking WF, Early JL, Burchardt H et al (1980) Autogenous cortical bone grafts in the reconstruction of segmental skeletal defects. J Bone Joint Surg 62:1039–1058
CAS
PubMed
Google Scholar
Enneking WF, Mindell ER (1991) Observations on massive retrieved human allografts. J Bone Joint Surg Am 73:1123–1142
Google Scholar
Friedlaender GE, Goldberg VM (eds) (1991) Bone and cartilage allografts: biology and clinical application. American Academy of Orthopaedic Surgeons, Park Ridge
Google Scholar
Frobin W, Brinckmann P, Leivesth G, Biggemann M, Reikeras O (1996) Precision measurement of segmental motion from flexion–extension radiographs of the lumbar spine. Clin Biomech 11:457–465
Article
Google Scholar
Glaser J, Stanley M, Sayre H, Woody J, Found E, Spratt K (2003) A 10-year follow-up evaluation of lumbar spine fusion with pedicle screw fixation. Spine 28:1390–1395
Article
Google Scholar
Guigui P, Plais PY, Flautre B et al (1994) Experimental model of posterolateral spinal arthrodesis in sheep part 2 application of the model: evaluation of vertebral fusion obtained with coral (Porites) or with a biphasic ceramic (Triosite). Spine 19:2798–2803
Google Scholar
Khan SN, Tomin E, Lane JM (2000) Clinical applications of bone graft substitutes. Orthop Clin North Am 31:389–398
Google Scholar
Korovessis P, Papazisis Z, Petsinis G (2000) Unilateral psoas abscess following posterior transpedicular stabilization of the lumbar spine. Eur Spine J 9:588–590
Google Scholar
Korovessis P, Koureas G, Repanti M. (2002) Histological findings in revision surgery of instrumented spine fusion with the use of coralline hydroxyapatite: advances in spinal fusion-molecular science, biomechanics and clinical management. Marcel Dekker, New York
Google Scholar
Lord CF, Gebhardt MC, Tomford WW, Mankin HJ(1988) Infection in bone allografts: incidence, nature and treatment J Bone Joint Surg Am 70:369–376
CAS
PubMed
Google Scholar
Mashoof AA, Siddiqui SA, Otero M, Tucci JJ. (2002) Supplementation of autogenous bone graft with coralline hydroxyapatite in posterior spine fusion for idiopathic adolescent scoliosis. Orthopaedics 25:1073–1076
Google Scholar
Marchesi DG, Thalgott JS, Aebi M (1998) Application and results of the AO internal fixation system in non traumatic indications. Spine 23:159–167
Google Scholar
Martin RB, Chapman MW, Homes RE et al (1989) Effects of bone ingrowth on the strength and non-invasive assessment of a coralline hydroxyapatite material. Biomaterials 10:481–488
Google Scholar
Morone MA, Boden SD (1998) Experimental posterolateral lumbar spinal fusion with a demineralized bone matrix gel. Spine 23:159–167
Google Scholar
Muschler GF, Negami S, Hyodo A, Gaisser D, Easley K, Kambic H (1996) Evaluation of collagen ceramic composite graft material in a spinal fusion model. Clin Orthop 328:250–260
Google Scholar
Ragni P, Lindholm S (1978) Interaction of allogeneic demineralized bone matrix and porous hydroxyapatite bioceramics in lumbar interbody fusion in rabbits Clin Orthop 272:292–299
Google Scholar
Rahimi F, Maurer BT, Enzweiler MG (1997) Coralline hydroxyapatite: a bone graft alternative in foot and ankle surgery. J Foot Ankle Surg 36:192–203
Google Scholar
Simon SR (ed) (1994) Orthopaedic basic science, 2nd edn. American Academy of Orthopaedic Surgeons, Rosemont, pp 284–293
Google Scholar
Simmons JW, Andersson GB, Russell GS, Hadjipavlou AG (1998) Aprospective study of 342 patients using transpedicular fixation instrumentation for lumbosacral spine arthrodesis. J Spinal Disord 11:367–374
Google Scholar
Stricker SJ, Sher JS (1997) Freeze dried cortical allograft in posteror spinal arthrodesis. Use with segmental instrumentation for idiopathic adolescent scoliosis. Orthopaedics 20:1039–1043
Google Scholar
Thalgott SJ, Giuffre MJ, Fritts K, Timlin M, Klezl Z (2001) Instrumented posterolateral lumbar fusion using coralline hydroxyapatite with or without demineralized bone matrix, as an adjunct to autologous bone. Spine J 2:131–137
Google Scholar
Truumees E, Herkowitz HN(1999) Alternatives to autologous bone harvest in spine surgery. Orthop J 12:77–88
Google Scholar
Turner JA, ErSek M, Herron L, et al (1992) Patients outcomes after lumbar spinal fusions. JAMA 268:907–911
Google Scholar