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Screening methods for woven materials as artificial cartilage.

机译:编织材料作为人造软骨的筛选方法。

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摘要

In the orthopedics industry, there exists a void in the continuum of care associated with joint pain due to cartilage damage and wear. Currently, patients are asked to endure joint pain with only over-the-counter pain medication to ease discomfort. When the pain becomes unbearable, joint surgery is performed. As the average age of joint replacement recipients decreases, the necessity of revision surgeries increases due to limited hardware life spans. Revision surgeries are more traumatic and require longer recovery times than primary replacements. Although some procedures, like unicondylar knee replacements and hip resurfacing, are less invasive and preserve more tissue than total joint procedures, a minimally invasive short-term cartilage replacement is desired. A synthetic plug of a three-dimensionally woven material has been forwarded as a possible solution to delay the need for a total joint replacement while effectively relieving pain. Once implanted, micro-motion between fibers within the device will be experienced during each loading cycle. The minimization of wear during these events is important not only to avoid device failure but also to minimize a biological response. In the current work, various screening methods for fiber materials are evaluated and range from simple mechanical property testing using an atomic force microscope (AFM), direct fiber-on-fiber wear using a rig test, to pin-on-disk accelerated life wear testing. It is found that direct fiber-on-fiber wear tests provide distinguishable rankings of fiber materials according to wear coefficient and identify polyethylene terephthalate (PET) and ultra-high-molecular-weight polyethylene (UHMWPE) as candidates for further investigation. Pin-on-disk tests have allowed the wear mechanisms of three-dimensional fabrics to be explored and provide insight for further optimization of weave parameters and fiber materials.
机译:在骨科行业中,由于软骨损伤和磨损而导致的与关节疼痛有关的连续护理存在一个空白。目前,要求患者仅使用非处方止痛药来减轻关节疼痛。当疼痛变得难以忍受时,进行关节手术。随着关节置换接受者的平均年龄下降,由于硬件寿命有限,翻修手术的必要性增加。翻修手术比主要的手术更具创伤性,并且需要更长的恢复时间。尽管与全关节手术相比,某些手术(如单icon膝关节置换和髋关节表面置换)具有较小的侵入性并保留了更多的组织,但仍需要微创的短期软骨置换术。已经提出了一种三维编织材料的合成塞,作为一种可能的解决方案,可以在有效缓解疼痛的同时延迟全关节置换的需要。一旦植入,将在每个加载周期内经历设备内纤维之间的微运动。这些事件期间的磨损最小化不仅对避免设备故障很重要,而且对于使生物学反应最小化也很重要。在当前的工作中,对纤维材料的各种筛选方法进行了评估,范围从使用原子力显微镜(AFM)进行的简单机械性能测试,使用钻机测试进行的直接纤维对纤维磨损,到针对磁盘的加速寿命磨损测试。发现直接的纤维对纤维的磨损测试根据磨损系数提供了可区分的纤维材料等级,并确定了聚对苯二甲酸乙二醇酯(PET)和超高分子量聚乙烯(UHMWPE)作为进一步研究的候选材料。针盘测试允许探索三维织物的磨损机理,并为进一步优化编织参数和纤维材料提供了见识。

著录项

  • 作者

    Giordano, Michael Austin.;

  • 作者单位

    University of Notre Dame.;

  • 授予单位 University of Notre Dame.;
  • 学科 Engineering Mechanical.;Textile Technology.;Plastics Technology.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 142 p.
  • 总页数 142
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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