Acta Med. 2008, 51: 203-207
https://doi.org/10.14712/18059694.2017.25
Bone Grafts in Periodontal Therapy
References
1. WH. Resorption rates of bone and bone substitutes. Oral Surg. 1964; 17: 650–7.
<https://doi.org/10.1016/0030-4220(64)90372-X>
2. JJ, Sznajder N, Alonso CA. Intraoral cancellous bone autografts in the treatment of intrabony pockets. J. Clin. Periodontol 1976; 3:104–9.
<https://doi.org/10.1111/j.1600-051X.1976.tb01856.x>
3. AS. Regeneration of bone in the presence of calcium sulfate. Arch Otolaryngol 1980; 106:405–9.
<https://doi.org/10.1001/archotol.1980.00790310029007>
4. I, Červinka M, Taha M, Strnad L. Řízená tkáňová regenerace – uplatnění v parodontologii. Quintessenz – Parodontologie 2001; 2:18–25.
5. Fassmann A. Řízená tkáňová a kostní regenerace ve stomatologii. Praha: Grada Publishing, 2002:13–14.
6. GE, Strong DM, Sell KW. Studies on the antigenicity of bone. Freeze-dried and deep frozen bone allografts in rabbits. J Bone Joint Surg Am 1976; 58:854–8.
<https://doi.org/10.2106/00004623-197658060-00018>
7. SE, Quintero G, Gher ME, Black BS, Richardson AC. Small versus large particles of demineralized freeze dried bone allografts in human intrabony periodontal defects. J Peridontol 1993; 64:844–7.
<https://doi.org/10.1902/jop.1993.64.9.844>
8. S, Bogle G. Periodontal regeneration with bone grafts. Curr Opin Periodontol 1994: 168–77.
9. MP, Fernández E, Driessens FCM, Planell JA. Modeling of the hydrolysis of α-Tricalcium phosphate. J Am Ceram Soc 2004; 82:2808–12.
<https://doi.org/10.1111/j.1151-2916.1999.tb02160.x>
10. VM, Stevenson S. Natural history of autografts and allografts. Clin Orthop Relat Res 1987; 225:7–16.
11. J, Nyman S. Barrier membranes in the treatment of periodontal defects. Curr Opin Periodontol 1996; 3:140–8.
12. J, Nyman S, Lindhe J. New attachment formation as a result of controlled tissue regeneration. J Clin Periodontol. 1984; 11:494–503.
<https://doi.org/10.1111/j.1600-051X.1984.tb00901.x>
13. J, Nyman S, Lindhe J, Karring T, Wennström J. New attachment formation in human periodontium by guided tissue regeneration. J Clin Periodontol. 1986; 13:604–15.
<https://doi.org/10.1111/j.1600-051X.1986.tb00854.x>
14. G, Patat JL, Fournie J, Chetail M. The use of coral as a bone graft substitute. J Biomed Mater Res 1987; 21:557–67.
<https://doi.org/10.1002/jbm.820210503>
15. Z. The rebuilding of the alveolar process by bone transplantation. Dent Cosmos 1923; 65:736.
16. LA, Stinchfield FE, Basset AL, Lyon WH. The role of soft tissues in osteogenesis. J Bone Joint Surg 1959; 41A:1243–54.
<https://doi.org/10.2106/00004623-195941070-00007>
17. K, Kiyokawa M, Hariya Y, Fujii T, Tai Y. Regenerative treatment of serious periodontosis with grafting of cancellous iliac bone and gingival flaps and replanting of patients’ teeth. J Craniofac Surg. 2002; 13:375–81.
<https://doi.org/10.1097/00001665-200205000-00003>
18. CP, Driessen AA, de Groot K, van den Hooff A. Biodegradation behaviour of various calcium phosphate materials in bone tissue. J Biomed Mater Res 1983; 17:769–84.
<https://doi.org/10.1002/jbm.820170505>
19. AH. On the repair potential of periodontal tissues. J Periodontol 1976; 47:256–60.
<https://doi.org/10.1902/jop.1976.47.5.256>
20. J, Bowers G, Bailey R. Comparison of bone graft materials. I. New bone formation with autografts and allografts: A histological evaluation. J Periodontol 1981; 52:297–302.
<https://doi.org/10.1902/jop.1981.52.6.297>
21. J, Bowers G, Bailey R. Comparison of bone graft materials. I. New bone formation with autografts and allografts determined by Strontium 85. J Periodontol 1981; 52:291–6.
<https://doi.org/10.1902/jop.1981.52.6.291>
22. JT, Prewett AB, Moyer MP. HIV inactivation in a bone allograft. J Periodontol 1992; 63:979–83.
<https://doi.org/10.1902/jop.1992.63.12.979>
23. JT. Autogenous and allogeneic bone grafts in periodontal therapy. Crit Rev Oral Biol Med 1992; 3:333–52.
<https://doi.org/10.1177/10454411920030040201>
24. JT. Freeze-dried bone allografts in periodontal reconstructive surgery. Dent Clin North Am 1991; 35:505–20.
25. WR, Graves SE, Bain GI. Synthetic bone graft substitutes. ANZ J. Surg. 2001; 71:354–61.
<https://doi.org/10.1046/j.1440-1622.2001.02128.x>
26. CL, O’Leary TJ. Autogenous bone transplants in the treatment of osseous defects. J Periodontol 1965; 36:5–14.
<https://doi.org/10.1902/jop.1965.36.1.5>
27. HF, Aichelmann-Reidy ME, Yukna RA. Bone and bone substitutes. Periodontology 2000 1999; 19:74–86.
<https://doi.org/10.1111/j.1600-0757.1999.tb00148.x>
28. S, Lindhe J, Karring T, Rylander H. New attachment following surgical treatment of human periodontal disease. J Clin Periodontol 1982; 9:290–96.
<https://doi.org/10.1111/j.1600-051X.1982.tb02095.x>
29. JL, Blumenthal NC, Spivak JM, Alexander H. Evaluation of a low temperature calcium phosphate particulate implant material: physical-chemical properties and in vivo bone response. J Oral Maxillofac Surg 1992; 50:969–78.
<https://doi.org/10.1016/0278-2391(92)90058-8>
30. E, Rose LF. Biologic and clinical considerations for autografts and allografts in periodontal regeneration therapy. Dent Clin North Am 1998; 42: 467–90.
31. RG, Hiatt WH, Boyce W. Iliac transplants in periodontal therapy. J Periodontol 1970; 41:566–80.
<https://doi.org/10.1902/jop.1970.41.10.566>
32. KS, Brown PW. Formation of calcium-deficient hydroxyapatite from alpha-tricalcium phosphate. Biomaterials 1998; 19:2209–17.
<https://doi.org/10.1016/S0142-9612(98)00131-8>
33. JR. Clinical and histological case study using resorbable hydroxyapatite for the repair of osseous defects prior to endosseous implant surgery. J Oral Implantol 1989; 15:186–92.
34. RA. Clinical evaluation of coralline calcium carbonate as a bone replacement graft material in human periodontal osseous defects. J Peridontol 1994; 65:177–85.
<https://doi.org/10.1902/jop.1994.65.2.177>
35. RA, Mayer ET, Amos SM. 5-year evaluation of durapatite ceramic alloplastic implants in periodontal osseous defects. J Periodontol 1989; 60:544–51.
<https://doi.org/10.1902/jop.1989.60.10.544>


