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Experimental and failure analysis of the prosthetic finger joint implants.

机译:假肢关节植入物的实验和失败分析。

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摘要

Small joint replacement arthroplasty of the hand is a well accepted surgical procedure to restore function and cosmesis in an individual with a crippled hand. Silicone elastomers have been used as prosthetic material in various small hand joints for well over three decades. Although the clinical science aspects of silicone elastomer failure are well known, the physical science aspects of prosthetic failure are scant and vague. In the following thesis, using both an animal model, and actual retrieved specimens which have failed in human service, experimental and failure analysis of silicone finger joints are presented.;Fractured surfaces of retrieved silicone trapezial implants, and silicone finger joint implants were studied with both FESEM and SEM; the mode of failure for silicone trapezium is by wear polishing, whereas the finger joint implants failed either by fatigue fracture or tearing of the elastomer, or a combination of both. Thermal analysis revealed that the retrieved elastomer implants maintained its viscoelastic properties throughout the service period.;In order to provide for a more functional and physiologic arthroplasty a novel finger joint (Rolamite prosthesis) is proposed using more recently developed thermoplastic polymers. The following thesis also addresses the outcome of the experimental studies of the Rolamite prosthesis in a rabbit animal model, in addition to the failure analysis of the thermoplastic polymers while in service in an in vivo synovial environment. Results of retrieved Rolamite specimens suggest that the use for thermoplastic elastomers such as block copolymer based elastomers in a synovial environment such as a mammalian joint may very well be limited.
机译:手的小关节置换术是公认的外科手术方法,可以恢复手不稳的个体的功能和美容效果。硅氧烷弹性体已在各种小型手关节中用作假体材料已有三十多年的历史了。尽管有机硅弹性体破坏的临床科学方面是众所周知的,但是假体破坏的物理科学方面却很少且不明确。在下面的论文中,使用动物模型和在人类服务中失败的实际取回的标本,介绍了硅树脂指关节的实验和失效分析。;对回收的硅树脂梯形植入物和硅树脂指关节植入物的断裂表面进行了研究。 FESEM和SEM硅梯形的失效模式是通过磨损抛光,而指关节植入物则由于疲劳断裂或弹性体撕裂或两者结合而失效。热分析表明,回收的弹性体植入物在整个使用期间都保持了其粘弹性。为了提供功能更强,更生理的关节置换术,人们提出了一种使用最近开发的热塑性聚合物的新型指关节(Rolamite假体)。除了在体内滑膜环境中使用热塑性聚合物的失效分析之外,以下论文还讨论了在兔动物模型中对Rolamite假体进行实验研究的结果。回收的Rolamite样品的结果表明,在滑膜环境例如哺乳动物关节中,热塑性弹性体例如基于嵌段共聚物的弹性体的使用可能受到很大限制。

著录项

  • 作者

    Naidu, Sanjiv H.;

  • 作者单位

    University of Pennsylvania.;

  • 授予单位 University of Pennsylvania.;
  • 学科 Engineering Materials Science.;Engineering Biomedical.;Health Sciences Medicine and Surgery.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 247 p.
  • 总页数 247
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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