Alternative Werkstoffe und Lösungen in der Knieendoprothetik für Patienten mit Metallallergie
暂无分享,去创建一个
[1] Klaus-Peter Schmitz,et al. Finite-Elemente-Analyse einer zementierten, keramischen Femurkomponente unter Berücksichtigung der Einbausituation bei künstlichem Kniegelenkersatz / Finite element analysis of a cemented ceramic femoral component for the assembly situation in total knee arthroplasty , 2007 .
[2] A. Kop,et al. Damage of oxinium femoral heads subsequent to hip arthroplasty dislocation three retrieval case studies. , 2007, The Journal of arthroplasty.
[3] F. Kummer,et al. Surface damage to an Oxinium femoral head prosthesis after dislocation. , 2007, The Journal of bone and joint surgery. British volume.
[4] B. Przybilla,et al. Hypersensitivity to titanium osteosynthesis with impaired fracture healing, eczema, and T‐cell hyperresponsiveness in vitro: case report and review of the literature , 2006, Contact dermatitis.
[5] R. Bader,et al. [Failure analysis of total knee replacement. Basics and methodological aspects of the damage analysis]. , 2006, Der Orthopade.
[6] M. Thomsen,et al. [Allergy towards bone cement]. , 2006, Der Orthopade.
[7] E. Steinhauser,,et al. Versagensanalyse von Knieendoprothesen , 2006, Der Orthopäde.
[8] R. Bader,et al. Ceramic knee endoprostheses: reality or future? , 2006 .
[9] M. Thomsen,et al. Hypersensitivity reactions in association to arthroplasty , 2006 .
[10] W. Kachler,et al. Das Allergiepotenzial von Implantatwerkstoffen auf Titanbasis , 2005, Der Orthopäde.
[11] D. D’Lima,et al. Oxidized Zirconium Femoral Components Reduce Polyethylene Wear in a Knee Wear Simulator , 2004, Clinical orthopaedics and related research.
[12] T. Albrecht,et al. Rotationsfehlstellungen der Komponenten als Ursache chronischer Schmerzen und vorzeitigem Prothesenversagen bei Knieendoprothesen , 2003, Der Orthopäde.
[13] A. Motheo,et al. Metallic biomaterials TiN-coated: corrosion analysis and biocompatibility. , 2003, Artificial organs.
[14] P. Thomas,et al. Allergien durch Implantatwerkstoffe , 2003, Der Orthopäde.
[15] R. Pilliar,et al. The fretting corrosion resistance of PVD surface-modified orthopedic implant alloys. , 2001, Journal of biomedical materials research.
[16] W. Plitz. Problems and complications in knee joint endoprosthetics from a material-testing point of view , 2000 .
[17] W. Plitz. [Knee endoprosthesis: selection and requirements of materials]. , 2000, Der Orthopade.
[18] M. Raimondi,et al. The in-vivo wear performance of prosthetic femoral heads with titanium nitride coating. , 2000, Biomaterials.
[19] U. Fink. Sicherheitsaspekte bei der Beschichtung von Titangleitkomponenten , 1997, Der Orthopäde.
[20] T. Miyazaki,et al. Stress fracture of the femoral component in total knee replacement: a report of 3 cases , 1997, International Orthopaedics.
[21] R. Thull,et al. Tierexperimentelle Prüfung von Titan mit Oberflächenbeschichtungen aus (Ti,Nb)ON und (Ti,Zr)O. Examination of Titanium Coated with (Ti,Nb)ON and (Ti,Zr)O in an Animal Experiment , 1995 .
[22] R. Streicher,et al. New surface modification for Ti-6Al-7Nb alloy: oxygen diffusion hardening (0DH) , 1991 .
[23] R. Buchanan,et al. Wear-accelerated corrosion of Ti-6Al-4V and nitrogen-ion-implanted Ti-6Al-4V: mechanisms and influence of fixed-stress magnitude. , 1987, Journal of biomedical materials research.