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A Bipolar Artificial Hip Joint Design for Contact Impingement Reduction

机译:用于接触冲击的双极性髋关节设计

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The acetabular liner of an artificial hip joint (AHJ) is easily damaged locally in case of contact impingement, i.e. in case of contact of the liner wall with the stem neck, especially when it is made from relatively soft material such as ultra-high molecular weight polyethylene (UHMWPE). Frequent contact impingement will severely damage the acetabular liner, requiring replacement of the AHJ. The aim of this study is to reduce AHJ contact impingement for specific combinations of flexion, internal rotation, and adduction of the thigh, by optimizing the design of the AHJ. The presented new design is based on modifying a conventional AHJ into a bipolar version with a higher free range of motion (RoM). Results show that the proposed design is able to prevent contact impingement for RoM. The latter range of motion corresponds well with the requirements of Shalat.
机译:在接触冲击的情况下,人造髋关节(AHJ)的髋臼衬里容易损坏,即在衬里壁与杆颈接触的情况下,特别是当它由诸如超高分子的相对柔软的材料制成时 重量聚乙烯(UHMWPE)。 频繁的接触冲击将严重损坏髋臼衬垫,需要更换AHJ。 本研究的目的是通过优化AHJ的设计,降低AHJ接触冲击,以获得特定的屈曲,内部旋转和内部旋转和内收的内膜。 所呈现的新设计基于将传统的AHJ修改为双极版本,具有更高的自由运动(ROM)。 结果表明,该设计能够防止rom的接触冲击。 后一程运动与Shalat的要求相符合。

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