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首页> 外文期刊>The American journal of orthopedics >A bench-top method for evaluating modular total hip component combinations.
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A bench-top method for evaluating modular total hip component combinations.

机译:一种用于评估模块化总髋关节组件组合的台式方法。

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摘要

A modular total hip prosthesis allows the surgeon to vary head size, neck length, and acetabular coverage. Different combinations, however, may increase the risk of impingement of the prosthesis neck on the acetabular liner, leading to dislocation. We developed a bench-top model to test different modular component combinations to determine how far the femoral component could travel within the acetabular liner before impingement led to dislocation. We tested two hip systems, each from a different manufacturer. Certain components increased the risk of impingement and dislocation: skirted necks, smaller heads, and lipped liners. While the contribution of each component was small, the risk was additive, so that the combination of a small head with a skirted neck in a lipped liner actually reduced the available range of motion by 18 degrees, from 146 degrees to 128 degrees, in the first system, and by 13 degrees, from 156 degrees to 143 degrees in the other. This method could be adapted to test a wide range of component configurations, from a number of manufacturers. These findings may be useful in avoiding potentially unstable configurations when given a choice of modular components.
机译:模块化的全髋关节假体使外科医生可以改变头部大小,颈部长度和髋臼覆盖范围。但是,不同的组合可能会增加假体颈部撞击髋臼衬板的风险,从而导致脱位。我们开发了一个台式模型来测试不同的模块化组件组合,以确定在撞击导致脱位之前股骨组件可以在髋臼内衬中移动多远。我们测试了两个髋关节系统,每个系统均来自不同的制造商。某些组件会增加撞击和脱臼的风险:裙边的脖子,较小的头和唇线笔。尽管每种成分的贡献很小,但风险却是累加的,因此,在带帽的衬里中,小头和裙边颈部的组合实际上将运动范围减小了18度,从146度降低到128度。首先是系统,然后是156度到143度之间的13度。该方法可适用于测试许多制造商提供的各种组件配置。如果选择了模块化组件,这些发现可能有助于避免潜在的不稳定配置。

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