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Non-invasive measurement of stress levels in knee implants using a magnetic-based detection method

机译:使用基于磁性的检测方法无创测量膝关节植入物的应力水平

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摘要

A knee replacement surgery (arthroplasty) has become prevalent worldwide and has a high success rate over the short to medium term. In some cases, especially over the longer term, implant degradation can develop due to the deterioration of the ultra-high molecular weight polyethylene (UHMWPE) tibial insert. Unfortunately, there are no satisfactory techniques currently available for assessing implant integrity and predicting failure. This paper describes a possible solution to this problem by using a non-invasive, electromagnetic method for monitoring implant integrity. This approach utilizes the magnetoelastic property of amorphous ribbon, which when stressed causes an inductance change in a nearby magnetizing winding. Amorphous ribbons encased in UHMWPE disks, to simulate a knee insert, were subjected to varying tensile stresses under an applied ac magnetic field. A correlation between total circuit impedance and applied stress was observed. The results obtained demonstrate that the proposed sensor has sufficient sensitivity for measuring typical stress levels associated with the axial forces in tibial inserts.
机译:膝关节置换手术(人工关节置换术)已在世界范围内普及,并且在中短期内成功率很高。在某些情况下,尤其是从长期来看,由于超高分子量聚乙烯(UHMWPE)胫骨插入物的劣化,植入物可能会退化。不幸的是,目前没有令人满意的技术可用于评估植入物的完整性和预测失败。本文介绍了一种通过使用非侵入性电磁方法监视植入物完整性的方法来解决此问题。这种方法利用了非晶带的磁弹性特性,该非晶带在受到应力时会在附近的磁化绕组中引起电感变化。装在UHMWPE圆盘中的非晶带(用于模拟膝盖插入物)在施加的交流磁场下承受变化的拉伸应力。观察到总电路阻抗与施加应力之间的相关性。获得的结果表明,所提出的传感器具有足够的灵敏度,可以测量与胫骨嵌件中的轴向力相关的典型应力水平。

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