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참고문헌

문서에서 저작자표시 (페이지 47-53)

14. Emmings FG. Chemically modified osseous material for the restoration of bone defects, J. Periodontol. 1974;45:385-390.

15. Wolff LF. Guided tissue regeneration in periodontal therapy, Northwest Dent.

2000;79:23-28.

16. Rosenberg E, Rose LF. Biologic and clinical considerations for autografts and allografts in periodontal regeneration therapy, Dent Clin North Am.

1998;42:467-490.

17. Froum SJ, Thaler R, Scopp IW, Stahl SS. Osseous autografts. I. Clinical responses to bone blend or hip marrow grfts, J. Periodontol. 1975;46:515-521.

18. Mellonig JT. Autogenous and allogeneic bone grafts in periodontal therapy, Crit Rev Oral Biol Med. 1992;3:333-352.

19. Carmagnola D, Adriaens P, Berglundh T. Healing of human extraction sockets filled with Bio-oss, Clin,. Oral Impl. Res. 2003;14:137-143.

20. Wenz B, Oesch B, Horst M. Analysis of the risk of transmitting bovine spongiform encephalopathy through bone grafts derived for bovine bone, Biomaterials. 2001;22:1599-1606.

21. Yeo SI, Park SH, Noh WC, Park JW, Lee JM, Suh JY. A comparative analysis of basic characteristics of several deproteinized bovine bone substitutes, Korean Academy of Periodontoloygy. 2009;39:149-156.

22. Ducheyne P, Qiu Q. Bioactive ceramics : the effect of surface reactivity on bone formation and bone cell function, Biomaterials. 1999;20:2287-2303.

23. Lee JE, Park JC, Kim YH, Suh H. In vitro evaluation of PEG medified polyurethanes in cellular toxicity, Biomet Res. 1998;2(2):65-68.

24. Lewandrowski. K, Gresser. JD, Wise DL, Trantolo DJ. Bioresorbable bone graft substitutes of different osteoconductivities, Biomaterials. 2000;22:757-764.

25. Groot K. Bioceramics of calcium phosphate, BocaRaton, FL, CRC Press Inc.

1983.

26. Hench LL, Wilson J. An introduction to bioceramics, World Scientific.

1993:1-24.

27. Aoki. H. Medical Application of Hydroxyapatite, Ishyaku Euro America. 1994.

28. L CT. Bone Graft Substitutes, ASTM International. 2003:180-187.

29. Decheyne P, Groot K. In vivo surface activity of a hydroxyapatite alveolar boen substitute, J. Biomed. Mater. Res. 1981;15:441-445.

30. Akao M, Aokiand H, Kato. K, Mater. J, Sci. 1981;(16):809.

31. Kato. K, Aoli H, Tabata T, Ogiso. M. Biocompatibility of apatite ceramics in mandibles, biomaterial. 1979;7:291-297.

32. Sun JS, Lin FH, Hung TY, Tsuang YH, Chang WHS, Liu HC. The influence of hydroxyapatite paticle on osteoclast cell activities, J. Biomed. Mat. Res.

1999;45:311-321.

33. Jarcho M. Calcium phospate ceramics as hard tissue prosthetics, Clin Orthop Relat Res. 1981;157:259-278

34. Famery R, Richard N, Boch P. Preperation of α- and β- Tricalcium Phosphate Ceramics, with and without Magnesium Addition, Ceramic International.

1994;20:327-336.

35. TenHuisen KS, Brown PW. Phase Evaluation of α-Tricalcium Phosphate, J.

Am. Cerm. Soc. 1999;82(10):2813-2818.

36. Kivrak N, Tas AC. Synthesis of Calcium Hydroxyaptite and β-tricalcium Phosphate (HA-TCP) Composite Bioceramic Powder and Their Sintering Behavior, J. Am Ceram. Soc. 1998;81(9):2245-2252.

37. Yang X, Wang Z. Synthesis of biphasic ceramics of hydroxyapatite and β-tricalcium phosphate with controlled phase content and porosity, J Mater. Chem.

1998;8(10):2233-2237.

38. Buser D, Hoffmann B, Bernard JP. Evaluation of filling materials in membrane-protected bone defects. A comparative histomorphometric study in the mandible of miniature pigs, Clin Oral Implants Res. 1998;9:137-150.

39. Langstaff S, Sayer M, Smith TJN, Pugh SM. Resorbable bioceramics based on stabilized calcium phosphates, Part Ⅱ: evaluation of biological response, Biomaterials. 2001;22:135-150

40. Bouler JM, LeGeros RZ, Daculsi G. Biphasic calcium phosphates: Influence of three synthesis parameters on the HA/beta-TCP ratio, J. Biomed. Mat. Res.

2000;25(8):67-71.

41. Bahn SL, Plaster. A bone substitute, Oral Surg Oral Med Oral Pathol.

1966;21(5):627-681.

42. Yang DJ. Comparative Study of Mechanically Mixed and Chemically Precipitated HA-TCP Ceramics for Bone Substitutes, Yeungnam University.

2005.

43. Daculsi G, Passuti N, Martin S, Deudon C, LeGeros RZ, Raher S. macroporous calcium phosphate ceramic for long bone surgery in humans and dogs. Clinical and histological study, J. Biomed. Master. Res. 1990;24:379-396

44. Lee JS. Histomorphometric evaluation of bone healing with fully interconnected microporous biphasic calcium phosphate ceramics, Kyungpook National University.

45. Hong MH, Son JS, Kim KM, Han MH, Oh DS, LeeYK. Drug-loaded porous spherical hydroxy apatite granules for bone regeneration, J Mater Sci: Mater Med. 2011;22:349-355.

46. Huh JB, Jung DH, Kim JS, Shin SW. Effects of different sizes of Hydroxyaptite/β-Tricalcium phosphate particles, Korean Academy of Prosthodontics. 2010;48(4):259-265.

47. Berube P, Yang Y, Carnes DL. The effect of sputtered calcium phosphate coating of different crystallinity on osteoblast differentiation, J. Periodontol.

2005;76:1697-1709.

48. Rohanizadeh R, Padrines M, Boouler JM. Apatite precipitation afer incubation of biphasic calcium-phosphate ceramic in various solution: influence of seed species and proteins, J. Biomed Mater Res. 1998;42:530-539.

49. Eggli PS, Mller W, Schenk BK. Porous hydroxyapatite and tricalcium phosphate cylinders with two different pore ssize ranges implanted in the cancellous bone of rabbits. A comparative histomorphometric and histologic study of bony ingrowth and implant substitution, Clin Orthop Relat Res. 1988;232:127-138.

50. Chang BS, Lee Ck, Hong KS. Osteoconduction at porous hydroxyapatite with various pore configurations, Biomaterilas. 2000;21:1291-1298.

51. Flautre B, Descamps M, Delecourt C, Blary MC, Hardouin P. Porous HA ceramic for bone replacement: role of the pores and interconnections -experimental study in the rabbit, J Mater Sci Mater Med. 2001;12:679-682.

52. Lu JX, Flautre B, Anselme K. Role of interconnections in porous bioceramics on bone recolonization in vitro and in vivo, J Mater Sci Mater Med.

1999;10:111-120.

53. Radin SR, Ducheyne P. The Effect of Calcium Phosphate Ceramic Composition and Structure on in vitro Behavior, J. Biomed. Mater. Res. 1993;27:25.

54. Ribeiro C, Rigo ECS, Sepulveda P, Bressiani JC, Bressiani AHA. Formation of Calcium Phophate Layer on Ceramics with Different Reactivities. Mater. Sci. &

Eng. 2004;24:631.

55. Suchanek W, Yoshimura M. Processing and Properties of HYdroxyapatite based Biomaterials for Use as Hard Tissue Replacement Implants. J. Mater. Res.

1998;13;94.

56. Hench LL. Bioceramics, J. Am Ceram. Soc. 1998;81(7):1705-1733 57. Kim HW, Kim HA, Ceramist. 2004;7(1):11-20.

58. Lu JX, Gallur A, Flautre B. Comparative study of tissue reactions to calcium phosphate ceramics among cancellous, cortical, and medullar bone site in rabbits. J. Biomed Mater Res. 1998;42;357-367.

59. Wiltfang J, Merten HA, Schlegel KA. Degradation characteristics of alpha and beta tricalcium phosphate (TCP) in minipigs. J. Biomed Mater Res.

2002;63:115-121.

60. Merten HA, wiltfang J, Grohmann U. Intraindividual comparative animal study of α- and β-tricalcium phosphate degradation in conjunction

61. Lu J, Descamps M, Dejou J. The biodegradation mechnism of calcium phosphate biomaterials in bone. J. Biomed Mater Res. 2002;63:408-412.

감사의 글

감사해요. 깨닫지 못했었는데, 내가 얼마나 소중한 존재라는 걸.

태초부터 지금까지 하나님의 사랑은 항상 날 향하고 있었다는 걸.

고마워요. 그 사랑을 가르쳐 준 당신께, 주께서 허락하신 당신께 그리스도의 사랑으로 더욱 섬기며 이젠 나도 세상에 전하리라.

당신은 사랑 받기 위해 그리고 그 사랑 전하기 위해 주께서 택하시고 이 땅에 심으셨네. 또 하나의 열매를 바라시며..

지극히 작은 저를 섬겨주시고, 제자로 받아주신 김 수관 지도교수님.. 2년이 넘는 시간동안 믿어주셔서, 또 사랑으로 아껴주셔서 정말로 감사합니다. 그리고, 사랑하는 이 숙영 교수님 과 표현할 수 없을 정도로 감사한 김 재성 교수님, 日新又日新 하겠습니다. 세 분의 지도와 가르침이 있었기 때문에 모두 가능했습니다. 교수님들께 감사한 마음들.. 모두 오래오래 가 슴속 깊이 기억하며 살겠습니다. 그리고 받은 만큼 나누는 제자가 되겠습니다.

그리고 그 외에 제가 얼마나 소중한 존재 인지를 깨닫게 해주신 모든 분께 감사합니다.

많은 어려움 속에서도 민지, 민주! 두 딸 잘 키워주신 사랑하는 우리 아버지 임 종빈씨와 어머니 박 성애씨께 감사합니다. 아빠, 엄마의 선한 성품 덕분에 두 딸이 복을 많이 받고 있어요. 앞으로도 마음의 기쁨이 되는 딸이 되겠습니다.

임 석빈 큰아버지, 김 귀순 큰어머니, 민희, 선희, 진희 언니들, 형부들, 귀한 동역자 효희, 임 기빈 작은아버지, 감사한 정원숙 작은어머니, 다운이, 승혁, 승호, 임 현빈 작은아버지, 홍대옥 작은어머니, 아름, 신영이, 해자고모, 해심이 고모 식구들, 연자이모, 미정이 이모 모 두 감사합니다.

문서에서 저작자표시 (페이지 47-53)

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