Surface Engineered Surgical Tools and Medical Devices

Surface engineered surgical tools and medical devices / , Surface engineered surgical tools and medical devices / , کتابخانه دیجیتال جندی شاپور اهواز

[1]  Masafumi Kikuchi,et al.  Elastic moduli of cast Ti-Au, Ti-Ag, and Ti-Cu alloys. , 2006, Dental materials : official publication of the Academy of Dental Materials.

[2]  F. Guilak,et al.  The effect of hip stem material modulus on surface strain in human femora. , 1998, Journal of biomechanics.

[3]  Toshikazu Akahori,et al.  Relationships between tensile deformation behavior and microstructure in Ti–Nb–Ta–Zr system alloys , 2005 .

[4]  Mitsuo Niinomi,et al.  Recent metallic materials for biomedical applications , 2002 .

[5]  M. Niinomi,et al.  Design and mechanical properties of new β type titanium alloys for implant materials , 1998 .

[6]  J. I. Qazi,et al.  Titanium alloys for biomedical applications , 2006 .

[7]  Mitsuo Niinomi,et al.  Aging response of the young’s modulus and mechanical properties of Ti-29Nb-13Ta-4.6Zr for biomedical applications , 2003 .

[8]  E. Abel,et al.  A finite element analysis of hollow stemmed hip prostheses as a means of reducing stress shielding of the femur. , 2001, Journal of biomechanics.

[9]  Guo He,et al.  Ti alloy design strategy for biomedical applications , 2006 .

[10]  G. Lütjering,et al.  Property optimization through microstructural control in titanium and aluminum alloys , 1999 .

[11]  Shigeki Katsura,et al.  Mechanical properties and cyto-toxicity of new beta type titanium alloy with low melting points for dental applications , 2005 .

[12]  Won-Yong Kim,et al.  Microstructure and elastic modulus of Ti¿Nb¿Si ternary alloys for biomedical applications , 2006 .

[13]  M Semlitsch,et al.  Titanium-Aluminium-Niobium Alloy, Development for Biocompatible, High Strength Surgical Implants - Titan-Aluminium-Niob-Legierung, entwickelt für körperverträgliche, hochfeste Implantate in der Chirurgie , 1985, Biomedizinische Technik. Biomedical engineering.

[14]  H. Sibum,et al.  Titanium and Titanium Alloys—From Raw Material to Semi‐finished Products , 2003 .

[15]  J. G. Ferrero,et al.  Candidate materials for high-strength fastener applications in both the aerospace and automotive industries , 2005 .

[16]  K. Katti,et al.  Biomaterials in total joint replacement. , 2004, Colloids and surfaces. B, Biointerfaces.

[17]  Rui Yang,et al.  Young’s modulus and mechanical properties of Ti-29Nb-13Ta-4.6Zr in relation to α″ martensite , 2002 .

[18]  Masahiko Ikeda,et al.  Mechanical properties and microstructures of low cost β titanium alloys for healthcare applications , 2005 .

[19]  Kathy K. Wang The use of titanium for medical applications in the USA , 1996 .