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Sensing methodology for in vivo stability evaluation of total hip and knee arthroplasty

机译:髋关节和膝关节置换术体内稳定性评估的传感方法

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摘要

This paper describes an implantable, remotely interrogated system for the in vivo measurement of both micromotion and migration in applications such as total hip arthroplasty (THA) and total knee arthroplasty (TKA). These metrics are the primary indicators of post-operative implant stability and their easy availability represents an important advance in the ability of clinicians to assess the long-term stability of the implants and also to plan and optimise patients' rehabilitation protocols. The system is based on a modified form of differential variable reluctance transducer (DVRT) whose null-point is set automatically by means of a self-calibration algorithm. The self-calibration process not only allows the measuring bridge to work at maximum accuracy (i.e. for micromotion measurements) but also automatically records gross changes in position (migration). Simulations and preliminary measurements show that the calibration algorithm works correctly in spite of component tolerances and initial set up errors, and that the device can measure micromotion with an amplitude as low as 1 mu m with a gross displacement (migration) in the range 0 to +/- 4 mm.
机译:本文介绍了一种可植入的远程询问系统,用于体内测量全髋关节置换术(THA)和全膝关节置换术(TKA)等应用中的微动和迁移。这些指标是术后植入物稳定性的主要指标,其易于获得代表了临床医生评估植入物的长期稳定性以及计划和优化患者康复方案的能力的重要进步。该系统基于差分形式的磁阻传感器(DVRT)的改进形式,其零点通过自校准算法自动设置。自校准过程不仅允许测量桥以最大精度工作(即用于微动测量),而且还可以自动记录位置的总体变化(偏移)。仿真和初步测量结果表明,尽管存在组件公差和初始设置误差,该校准算法仍能正常工作,并且该设备可以测量振幅低至1μm且总位移(迁移)在0至0之间的微动。 +/- 4毫米

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