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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Does increased bone-cement interface strength have negative consequences for bulk cement integrity? A finite element study.
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Does increased bone-cement interface strength have negative consequences for bulk cement integrity? A finite element study.

机译:骨水泥界面强度的增加是否会对整体水泥的完整性产生负面影响?有限元研究。

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摘要

Implant loosening is one of the most important modes of failure of cemented total hip replacement. It may be related to the cement strength, cement-prosthesis interface, cement-bone interface, surgical technique, or stem design. The main purpose of this study is to investigate the effect of bone-cement interface mechanical properties on cement degradation. The computational methodology proposed herein combines a previously developed bone-cement interface damage model and an accumulative damage model for bulk cement. This has been applied to a finite element model of an Exeter cemented hip implant. A higher strength of the bone-cement interface due to a higher amount of interdigitated bone results in faster cement deterioration. Over time, damage both at the bone-cement interface and in the cement mantle worsens. Also, a larger debonded area was predicted proximally, as observed in clinical practice. We conclude that the computational model proposed herein allows a realistic simulation of the bone-cement interface debonding and cement degradation, being a useful tool in the design of this kind of medical devices.
机译:植入物松动是全髋置换术失败的最重要方式之一。它可能与骨水泥强度,骨水泥假体界面,骨水泥界面,外科手术技术或柄设计有关。这项研究的主要目的是研究骨水泥界面力学性能对水泥降解的影响。本文提出的计算方法结合了以前开发的骨水泥界面损伤模型和散装水泥的累积损伤模型。这已应用于埃克塞特骨水泥髋关节植入物的有限元模型。由于数量更多的叉指骨而导致的骨水泥界面强度更高,导致水泥的固化速度更快。随着时间的流逝,在骨水泥界面和水泥套中的损坏都会加剧。而且,如在临床实践中所观察到的,近端预计会有更大的脱胶面积。我们得出的结论是,本文提出的计算模型允许对骨水泥界面剥离和骨水泥降解进行真实模拟,这是设计此类医疗设备的有用工具。

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