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钛种植体种植相关因素研究进展 被引量:1

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摘要 牙体种植是目前较为理想的修复手段之一,其中材料的选择以及植入体表面的特性,包括它的机械性能、物理性能以及形态学都是至关重要的,很大程度上决定了种植体种植的成功与否。钛种植体不仅具有良好的物理性能,而且还具有高度的生物相容性,是目前较理想的牙体种植材料,这与钛金属本身的性质和种植体表面的特性是分不开的。近年来,关于钛种植体的报道已渐增多,现对其相关研究作一综述。
作者 姒蜜思
出处 《浙江医学》 CAS 2008年第3期294-297,共4页 Zhejiang Medical Journal
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  • 1汪大林.骨融合种植体[J].国外医学(生物医学工程分册),1994,17(3):136-141. 被引量:2
  • 2陈安玉.口腔种植学[M].成都:四川科学技术出版社,1989.10-14.
  • 3[1]Li Jianguo. Behaviour of titanium and titania-based ceramics in vitro and in vivo. Biomaterials. 1993. 14 (3): 229~232
  • 4[2]Wisbey A, Gregson P J, Peter L M. Effect of surface treatment on the dissolution of titanium-based implant materials. Biomaterials, 1991, 12(5) : 470~473
  • 5[3]Sundgren J E,Bodo P, Lundstrom l.Auger eleetron spectroscopic studies of the interface between human tissue and implants of titanium and stainless steel. J Colloid InterfSci, 1986, 110(2):470~473
  • 6[4]Browne M, Gregson P J ,West R H. Characterization of titanium alloy implant surfaces with improved dissolution resistance. J Mater Sci in Med, 1996, 7(3) :323~329
  • 7[1]sergo V, Sbalzero O, David RC, Mechanical and chemical consequences of the residual stresses in plasma sprayed hydroxyaptite coatings[J]. Biom-aterials, 1997, 18(6):477-482.
  • 8[3]Han CH. Quantitative and qualitative investigations of surface enlarged titanium and titanium alloy implants [J]. Clin Oral Implants Res,1998,9(1):1-10.
  • 9[4]Perry R. Paul Jonhnson Soheila Dadgostari, Early endosseous integration enhanced by dual acid etching of titanium: a torque removal study in the rabbit[J]. Clin Oral Impants Res, 2001,12(2) :350-359.
  • 10[5]Branemark PI. Tissue Intergrated Protheses: Osseointergration in Clinical Dentaistry[M]. Quintessence Publishing Co, Inc. 1985:99-116.

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  • 1刘丽,张李明,张晓聪.牙种植体结合上皮形成的动物实验[J].浙江大学学报(医学版),2005,34(3):230-232. 被引量:4
  • 2赵宝红,伊哲,战德松,杨晓临,杨彦昌,邹建梧,周正任,艾红军.类金刚石碳涂层的钛种植体对小鼠免疫功能影响的研究[J].中国医科大学学报,2005,34(6):542-543. 被引量:3
  • 3张丁华,孙皎.牙种植体材料的研究进展[J].口腔材料器械杂志,2006,15(1):33-36. 被引量:11
  • 4Edward L.Nanophysics and nanotechnology:an introduction to modern concepts in nanoscience.Weinheirm:Wiley-VCH.2006:343.
  • 5Akahori T,Niinomi M.Fracture characteristics of fatigued Ti-6AI-4V ELI as animplant material.Mat Sci and Eng.1998;A243:237-243.
  • 6Niinomi M.Mechanical properties of biomedical titanium alloys.Mater Sci Eng A.1998;243:231-236.
  • 7Karlsson M,Palsgard E,Wilshaw PR,et al.lnitial in vitro interaction of osteoblasts with nano-porous alumina.Biomaterials.2003; 24(18):3039-3304.
  • 8Kokubo T,Kim HM.Kawashita M.Novel bioactive materials with different mechanical properties.Biomaterials.2003;24(13):2161-2175.
  • 9Strietzel FP,Reichart PA,Graf HL.Lateral alveolar ridge augmentation using a synthetic nano-crystalline hydroxyapatite bone substitution material (Ostim):preliminary clinical and histological results.Clin Oral Implants Res.2007;18(6):743-751.
  • 10Kokubo T,Kim HM.Kawashita M.Novel bioactive materials with different mechanical properties.Biomaterials. 2003;24(13):2161-2175.

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