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从生物学和力学性能角度出发,评述了生物医用钛合金实现特定生理功能需具有不同性能要求.以硬组织替代、介入性治疗钛合金及口腔修复用钛合金在生物学性能要求上的不同和在弹性模量等力学性能方面的差异为例,结合医用钛合金设计制造的具体实例,阐明了钛合金生物医用功能需求的多样性,为钛合金在生物医用领域的分类与设计提供了一种新的思路和借鏊.

参考文献

[1] 汶建宏,杨冠军,葛鹏,毛小南,赵映辉.β钛合金的研究进展[J].钛工业进展,2008(01):33-39.
[2] Bothe R T;Beaton L E;Davenport H A .[J].Surgery Gynecology and Obstetrics,1940,71:598.
[3] Toshikazu Akahori;Mitsuo Niinomi;Hisao Fukui;Michiharu Ogawa;Hiroyuki Toda .Improvement in fatigue characteristics of newly developed beta type titanium alloy for biomedical applications by thermo-mechanical treatments[J].Materials science & engineering, C. Biomimetic and supramolecular systems,2005(3):248-254.
[4] Silva H M;Schneider S G;Moura C Neto .[J].Materials Science and Engineering C:Biomimetic and Supramolecular Systems,2004,24:679.
[5] Liu Xuanyong;Paul K Chu;Ding Chuanxian .[J].Materials Science and Engineering R:Reports,2004,47:49.
[6] Maeshima T;Ushimaru S;Yamauchi K et al.[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,2006,438-440:844.
[7] Mandl S;Fleischer A;Manova D;Rauschenbach B .Wear behaviour of NiTi shape memory alloy after oxygen-PIII treatment[J].Surface & Coatings Technology,2006(22/23):6225-6229.
[8] Kaori Kuribayashi;Koichi Tsuchiya;Zhong You;Dacian Tomus;Minoru Umemoto;Takahiro Ito;Masahiro Sasaki .Self-deployable origami stent grafts as a biomedical application of Ni-rich TiNi shape memory alloy foil[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2006(1/2):131-137.
[9] Cioffi M;Gilliland D;Ceccone G et al.[J].Acta Biomaterialia,2005,1:717.
[10] James Kirkpatrick C;Kirsten Peters;Iris Hermanns M et al.[J].Itbm-Rbm,2005,26:192.
[11] 樊东辉,徐政.生物医学材料的研究现状与发展趋势[J].上海生物医学工程,2002(04):37-40.
[12] 周宇,杨贤金,崔振铎.新型医用β-钛合金的研究现状及发展趋势[J].金属热处理,2005(01):47-50.
[13] 孙佳凝,赵云凤,高宁.牙科合金材料的生物相容性及影响合金离子析出的因素[J].国外医学(口腔医学分册),2003(03):212-214.
[14] 杨晓芳,奚廷斐.生物材料生物相容性评价研究进展[J].生物医学工程学杂志,2001(01):123-128.
[15] 孙皎.生物材料和医疗器械的生物学评价[J].中国医疗器械杂志,2003(01):1-3,8.
[16] 姜红江,王玉林.医用钛合金的表面改性[J].生物骨科材料与临床研究,2005(04):28-30,33.
[17] Mitsuo Niinomi .Recent research and development in titanium alloys for biomedical applications and healthcare goods[J].Science and technology of advanced materials,2003(5):445-454.
[18] Cui Chuaxiang;Shen Yutian;Wang Ru.In situ Tip/AI composite fabricated by plasma jet[A].Tenerife,Span,2001
[19] Molimri A;Straffelini G et al.[J].Wear,1997,208:105.
[20] 金红.医用钛合金及其表面改性技术的研究现状[J].稀有金属,2003(06):794-798.
[21] Pan J;Karlen C;Ulfvin C .[J].Journal of the Electrochemical Society,2000,147:1021.
[22] Reclaru L;Lerf R;Eschler PY;Blatter A;Meyer JM .Pitting, crevice and galvanic corrosion of REX stainless-steel/CoCr orthopedic implant material.[J].Biomaterials,2002(16):3479-3485.
[23] 杨大智;吴明雄.Ni-Ti形状记忆合金在生物医学领域的应用[M].北京:冶金工业出版社,2003:225.
[24] Rack HJ;Qazi JI .Titanium alloys for biomedical applications[J].Materials science & engineering, C. Biomimetic and supramolecular systems,2006(8):1269-1277.
[25] 沈阳;王贵学 等.[J].中国医疗器械研究,2006,30:3.
[26] Duerig T;Pelton A;Stockel O .[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,1999,149:273.
[27] Mansoor M A .[J].Biomaterials,1995,16:593.
[28] Kim YH;Han DK;Park KD;Kim SH .Enhanced blood compatibility of polymers grafted by sulfonated PEO via a negative cilia concept.[J].Biomaterials,2003(13):2213-2223.
[29] Niinomi M .Fatigue performance and cyto-toxicity of low rigidity titanium alloy, Ti-29Nb-13Ta-4.6Zr.[J].Biomaterials,2003(16):2673-2683.
[30] 李世普.生物医用材料导论[M].武汉:武汉工业大学出版社,2000
[31] Sunmer D R;Calante J O .[J].Clinical Orthopaedics and Related Research,1992,274:202.
[32] Kovacs P;Davidson J A.The electrochemical behavior of a new titanium alloy with superior biocompatibility[A].TMS,Warrendale,1993:2705.
[33] Ahmed T.A new low modulus,biocompatible titanium alloy[A].London:The Inst Mater,1995:1760.
[34] Kuroda D.;Morinaga M.;Kato Y.;Yashiro T.;Niinomi M. .Design and mechanical properties of new beta type titanium alloys for implant materials[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,1998(1/2):244-249.
[35] 徐丽娟;陈子勇;陈田勇 等.[J].稀有金属材料与工程,2005,34:148.
[36] Banerjee R.;Nag S.;Stechschulte J.;Fraser HL. .Strengthening mechanisms in Ti-Nb-Zr-Ta and Ti-Mo-Zr-Fe orthopaedic alloys[J].Biomaterials,2004(17):3413-3419.
[37] Shuji Hanada;Matsumoto H;Watanabe S.Strengthening of low Young's modulus beta Ti-Nb-Sn alloys by thermomechanical processing[A].ASM International,2006:9.
[38] 陈治清.口腔材料学[M].北京:人民卫生出版社,2003:166.
[39] Mitsuo Niinomi .[J].Materials Science and Engineering,1998,A243:231.
[40] O Okuno .[J].Jpn Soc Biomater,1996,14:267.
[41] Akahori T;Niinomi M;Suzuki A .[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,2002,33A:503.
[42] 宋西平;张蓓 .一种模量可调型矫牙用钛合金及其制备工艺[P].中国,200610113509.2,2008-09-03.
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