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Enclosed Electronic System for Force Measurements in Knee Implants

机译:用于膝关节植入物的力测量的封闭式电子系统

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摘要

Total knee arthroplasty is a widely performed surgical technique. Soft tissue force balancing during the operation relies strongly on the experience of the surgeon in equilibrating tension in the collateral ligaments. Little information on the forces in the implanted prosthesis is available during surgery and post-operative treatment. This paper presents the design, fabrication and testing of an instrumented insert performing force measurements in a knee prosthesis. The insert contains a closed structure composed of printed circuit boards and incorporates a microfabricated polyimide thin-film piezoresistive strain sensor for each condylar compartment. The sensor is tested in a mechanical knee simulator that mimics in-vivo conditions. For characterization purposes, static and dynamic load patterns are applied to the instrumented insert. Results show that the sensors are able to measure forces up to 1.5 times body weight with a sensitivity fitting the requirements for the proposed use. Dynamic testing of the insert shows a good tracking of slow and fast changing forces in the knee prosthesis by the sensors.
机译:全膝关节置换术是一项广泛使用的外科手术技术。手术期间软组织力的平衡在很大程度上取决于外科医生在平衡副韧带张力方面的经验。在手术和术后治疗期间,关于植入的假体中的力的信息很少。本文介绍了在膝关节假体中执行力测量的器械插入物的设计,制造和测试。插入件包含一个由印刷电路板组成的封闭结构,并为每个lar腔室配备了一个微型聚酰亚胺薄膜压阻式应变传感器。该传感器在模拟体内条件的机械膝盖模拟器中进行了测试。出于表征的目的,将静态和动态载荷模式应用于已插入仪表的插件。结果表明,这些传感器能够测量高达1.5倍体重的力,其灵敏度符合拟议用途的要求。插入物的动态测试显示,传感器可以很好地跟踪膝关节假体中缓慢变化和快速变化的力。

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