References for Volume I of Tobias and Johnston: Veterinary Surgery: Small Animal, ed


Chapter 67: Mandible and Maxillofacial Fractures



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Chapter 49: Bone Grafts and Substitutes




REFERENCES

  1. American Association of Tissue Banks: Standards for tissue banking, ed 12, McLean, VA, 2008, American Association of Tissue Banks.

  2. Arinzeh TL, Peter SJ, Archambault MP, et al: Allogeneic mesenchymal stem cells regenerate bone in a critical-sized canine segmental defect. J Bone Joint Surg Am 85:1927, 2003. PUBMED Abstract

  3. Arizono T, Iwamoto Y, Okuyama K, et al: Ethylene oxide sterilization of bone grafts: residual gas concentration and fibroblast toxicity. Acta Orthop Scand 65:640, 1994. PUBMED Abstract

  4. Baker TF, Ronholdt CJ, Bogdansky S: Validating a low dose gamma irradiation process for sterilizing allografts using ISO 11137 method 2B. Cell Tissue Bank 6:271, 2005. PUBMED Abstract

  5. Bergman RL, Levine JM, Coates JR, et al: Cervical spinal locking plate in combination with cortical ring allograft for a one level fusion in dogs with cervical spondylotic myelopathy. Vet Surg 37:530, 2008. PUBMED Abstract

  6. Betz VM, Betz OB, Glatt V, et al: Healing of segmental bone defects by direct percutaneous gene delivery: effect of vector dose. Hum Gene Ther 18:907, 2007. PUBMED Abstract

  7. Bishop GB, Einhorn TA: Current and future clinical applications of bone morphogenetic proteins in orthopaedic trauma surgery. Int Orthop 31:721, 2007. PUBMED Abstract

  8. Bonutti PM, Cremens MJ, Miller BG: Formation of structural grafts from cancellous bone fragments. Am J Orthop 27:499, 1998. PUBMED Abstract

  9. Brodke D, Pedrozo HA, Kapur TA, et al: Bone grafts prepared with selective cell retention technology heal canine segmental defects as effectively as autograft. J Orthop Res 24:857, 2006. PUBMED Abstract

  10. Bruder SP, Jaiswal N, Ricalton NS, et al: Mesenchymal stem cells in osteobiology and applied bone regeneration. Clin Orthop Relat Res S247, 1998. PUBMED Abstract

  11. Bruder SP, Kraus KH, Goldberg VM, et al: The effect of implants loaded with autologous mesenchymal stem cells on the healing of canine segmental bone defects. J Bone Joint Surg Am 80:985, 1998. PUBMED Abstract

  12. Bucholz RW: Nonallograft osteoconductive bone graft substitutes. Clin Orthop Relat Res 44, 2002. PUBMED Abstract

  13. Burchardt H: The biology of bone graft repair. Clin Orthop Relat Res 28, 1983. PUBMED Abstract

  14. Connolly JF: Injectable bone marrow preparations to stimulate osteogenic repair. Clin Orthop Relat Res 8, 1995. PUBMED Abstract

  15. Cornu O, Schubert T, Libouton X, et al: Particle size influence in an impaction bone grafting model: comparison of fresh-frozen and freeze-dried allografts. J Biomech 42:2238, 2009. PUBMED Abstract

  16. Critchlow MA, Bland YS, Ashhurst DE: The effect of exogenous transforming growth factor-beta 2 on healing fractures in the rabbit. Bone 16:521, 1995. PUBMED Abstract

  17. Eggli PS, Muller W, Schenk RK: Porous hydroxyapatite and tricalcium phosphate cylinders with two different pore size ranges implanted in the cancellous bone of rabbits: a comparative histomorphometric and histologic study of bony ingrowth and implant substitution. Clin Orthop Relat Res 127, 1988. PUBMED Abstract

  18. Ferguson JF: Fracture of the humerus after cancellous bone graft harvesting in a dog. J Small Anim Pract 37:232, 1996. PUBMED Abstract

  19. Gerhart TN, Kirker-Head CA, Kriz MJ, et al: Healing segmental femoral defects in sheep using recombinant human bone morphogenetic protein. Clin Orthop Relat Res 317, 1993. PUBMED Abstract

  20. Hoffer MJ, Griffon DJ, Schaeffer DJ, et al: Clinical applications of demineralized bone matrix: a retrospective and case-matched study of seventy-five dogs. Vet Surg 37:639, 2008. PUBMED Abstract

  21. Holtzclaw D, Toscano N, Eisenlohr L, et al: The safety of bone allografts used in dentistry: a review. J Am Dent Assoc 139:1192, 2008. PUBMED Abstract

  22. Horowitz MC, Friedlaender GE: Immunologic aspects of bone transplantation: a rationale for future studies. Orthop Clin North Am 18:227, 1987. PUBMED Abstract

  23. Johnson KA: Histologic features of the healing of bone graft donor sites in dogs. Am J Vet Res 49:885, 1988. PUBMED Abstract

  24. Kaku N, Tsumura H, Kataoka M, et al: Influence of aeration, storage, and rinsing conditions on residual ethylene oxide in freeze-dried bone allograft. J Orthop Sci 7:238, 2002. PUBMED Abstract

  25. Kato T, Kawaguchi H, Hanada K, et al: Single local injection of recombinant fibroblast growth factor-2 stimulates healing of segmental bone defects in rabbits. J Orthop Res 16:654, 1998. PUBMED Abstract

  26. Kay MA, Glorioso JC, Naldini L: Viral vectors for gene therapy: the art of turning infectious agents into vehicles of therapeutics. Nat Med 7:33, 2001. PUBMED Abstract

  27. Kirker-Head CA, Boudrieau RJ, Kraus KH: Use of bone morphogenetic proteins for augmentation of bone regeneration. J Am Vet Med Assoc 231:1039, 2007. PUBMED Abstract

  28. Kraus KH, Kirker-Head C: Mesenchymal stem cells and bone regeneration. Vet Surg 35:232, 2006. PUBMED Abstract

  29. Lafaver S, Miller NA, Stubbs WP, et al: Tibial tuberosity advancement for stabilization of the canine cranial cruciate ligament-deficient stifle joint: surgical technique, early results, and complications in 101 dogs. Vet Surg 36:573, 2007. PUBMED Abstract

  30. Laursen M, Christensen FB, Bunger C, et al: Optimal handling of fresh cancellous bone graft: different peroperative storing techniques evaluated by in vitro osteoblast-like cell metabolism. Acta Orthop Scand 74:490, 2003. PUBMED Abstract

  31. Lewis JR, Boudrieau RJ, Reiter AM, et al: Mandibular reconstruction after gunshot trauma in a dog by use of recombinant human bone morphogenetic protein-2. J Am Vet Med Assoc 233:1598, 2008. PUBMED Abstract

  32. Lieberman JR, Daluiski A, Einhorn TA: The role of growth factors in the repair of bone: biology and clinical applications. J Bone Joint Surg Am 84:1032, 2002. PUBMED Abstract

  33. Lieberman JR, Daluiski A, Stevenson S, et al: The effect of regional gene therapy with bone morphogenetic protein-2-producing bone-marrow cells on the repair of segmental femoral defects in rats. J Bone Joint Surg Am 81:905, 1999. PUBMED Abstract

  34. Lieberman JR, Ghivizzani SC, Evans CH: Gene transfer approaches to the healing of bone and cartilage. Mol Ther 6:141, 2002. PUBMED Abstract

  35. Lind M, Schumacker B, Soballe K, et al: Transforming growth factor-beta enhances fracture healing in rabbit tibiae. Acta Orthop Scand 64:553, 1993. PUBMED Abstract

  36. Lindsey RW, Gugala Z, Milne E, et al: The efficacy of cylindrical titanium mesh cage for the reconstruction of a critical-size canine segmental femoral diaphyseal defect. J Orthop Res 24:1438, 2006. PUBMED Abstract

  37. McAnulty JF: Effect of various short-term storage methods on viability of cancellous bone fragments. Am J Vet Res 60:63, 1999. PUBMED Abstract

  38. Milovancev M, Muir P, Manley PA, et al: Clinical application of recombinant human bone morphogenetic protein-2 in 4 dogs. Vet Surg 36:132, 2007. PUBMED Abstract

  39. Mroz TE, Joyce MJ, Steinmetz MP, et al: Musculoskeletal allograft risks and recalls in the United States. J Am Acad Orthop Surg 16:559, 2008. PUBMED Abstract

  40. Muschler GF, Nitto H, Matsukura Y, et al: Spine fusion using cell matrix composites enriched in bone marrow-derived cells. Clin Orthop Relat Res 102, 2003.PUBMED Abstract

  41. Nakahara H, Goldberg VM, Caplan AI: Culture-expanded periosteal-derived cells exhibit osteochondrogenic potential in porous calcium phosphate ceramics in vivo. Clin Orthop Relat Res 291, 1992. PUBMED Abstract

  42. Nakamura T, Hara Y, Tagawa M, et al: Recombinant human basic fibroblast growth factor accelerates fracture healing by enhancing callus remodeling in experimental dog tibial fracture. J Bone Miner Res 13:942, 1998. PUBMED Abstract

  43. Nash TJ, Howlett CR, Martin C, et al: Effect of platelet-derived growth factor on tibial osteotomies in rabbits. Bone 15:203, 1994. PUBMED Abstract

  44. Nielsen HM, Andreassen TT, Ledet T, et al: Local injection of TGF-beta increases the strength of tibial fractures in the rat. Acta Orthop Scand 65:37, 1994. PUBMED Abstract

  45. Pekkarinen T, Hietala O, Lindholm TS, et al: Influence of ethylene oxide sterilization on the activity of native reindeer bone morphogenetic protein. Int Orthop 28:97, 2004. PUBMED Abstract

  46. Pelled G, Ben-Arav A, Hock C, et al: Direct gene therapy for bone regeneration: gene delivery, animal models, and outcome measures. Tissue Eng Part B Rev 16:13, 2010. PUBMED Abstract

  47. Penwick RC, Mosier DA, Clark DM: Healing of canine autogenous cancellous bone graft donor sites. Vet Surg 20:229, 1991. PUBMED Abstract

  48. Perry CR: Bone repair techniques, bone graft, and bone graft substitutes. Clin Orthop Relat Res 71, 1999. PUBMED Abstract

  49. Peterson B, Whang PG, Iglesias R, et al: Osteoinductivity of commercially available demineralized bone matrix: preparations in a spine fusion model. J Bone Joint Surg Am 86:2243, 2004. PUBMED Abstract

  50. Quintavalla J, Uziel-Fusi S, Yin J, et al: Fluorescently labeled mesenchymal stem cells (MSCs) maintain multilineage potential and can be detected following implantation into articular cartilage defects. Biomaterials 23:109, 2002. PUBMED Abstract

  51. Schmitt JM, Hwang K, Winn SR, et al: Bone morphogenetic proteins: an update on basic biology and clinical relevance. J Orthop Res 17:269, 1999. PUBMED Abstract

  52. Sciadini MF, Johnson KD: Evaluation of recombinant human bone morphogenetic protein-2 as a bone-graft substitute in a canine segmental defect model. J Orthop Res 18:289, 2000. PUBMED Abstract

  53. Shors EC: Coralline bone graft substitutes. Orthop Clin North Am 30:599, 1999. PUBMED Abstract

  54. Silbermann M, Lewinson D, Gonen H, et al: In vitro transformation of chondroprogenitor cells into osteoblasts and the formation of new membrane bone. Anat Rec 206:373, 1983. PUBMED Abstract

  55. Sinibaldi KR: Evaluation of full cortical allografts in 25 dogs. J Am Vet Med Assoc 194:1570, 1989. PUBMED Abstract

  56. Smith MM, Saunders GK, Moon ML, et al: Evaluation of the caudoventral portion of the mandible as a donor site for corticocancellous bone for periodontal surgery in dogs. Am J Vet Res 54:481, 1993. PUBMED Abstract

  57. Spector DI, Keating JH, Boudrieau RJ: Immediate mandibular reconstruction of a 5?cm defect using rhBMP-2 after partial mandibulectomy in a dog. Vet Surg 36:752, 2007. PUBMED Abstract

  58. Straw RC, Powers BE, Withrow SJ, et al: The effect of intramedullary polymethylmethacrylate on healing of intercalary cortical allografts in a canine model. J Orthop Res 10:434, 1992. PUBMED Abstract

  59. Strong DM, Friedlaender GE, Tomford WW, et al: Immunologic responses in human recipients of osseous and osteochondral allografts. Clin Orthop Relat Res 107, 1996. PUBMED Abstract

  60. Tay BK, Patel VV, Bradford DS: Calcium sulfate- and calcium phosphate-based bone substitutes: mimicry of the mineral phase of bone. Orthop Clin North Am 30:615, 1999. PUBMED Abstract

  61. Trotter EJ: Cervical spine locking plate fixation for treatment of cervical spondylotic myelopathy in large breed dogs. Vet Surg 38:705, 2009. PUBMED Abstract

  62. Turonis JW, McPherson JC, 3rd, Cuenin MF, et al: The effect of residual calcium in decalcified freeze-dried bone allograft in a critical-sized defect in the Rattus norvegicus calvarium. J Oral Implantol 32:55, 2006. PUBMED Abstract

  63. Urist MR: Bone: formation by autoinduction. Science 150:893, 1965. PUBMED Abstract

  64. Vangsness CT, Jr, Garcia IA, Mills CR, et al: Allograft transplantation in the knee: tissue regulation, procurement, processing, and sterilization. Am J Sports Med 31:474, 2003. PUBMED Abstract

  65. Vidal MA, Robinson SO, Lopez MJ, et al: Comparison of chondrogenic potential in equine mesenchymal stromal cells derived from adipose tissue and bone marrow. Vet Surg 37:713, 2008. PUBMED Abstract

  66. White E, Shors EC: Biomaterial aspects of Interpore-200 porous hydroxyapatite. Dent Clin North Am 30:49, 1986. PUBMED Abstract

  67. Wozney JM, Rosen V, Celeste AJ, et al: Novel regulators of bone formation: molecular clones and activities. Science 242:1528, 1988. PUBMED Abstract

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