Calibration of linear displacement sensors for micromotion studies

M. DiSilvestro, T. Dietz
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引用次数: 3

Abstract

This paper describes a calibration method for linear displacement sensors that includes quantifiable errors on the order of 1 /spl mu/m, and that has been adopted in an effort to ensure accurate measurements of micromotion within orthopaedic implants during simulated use. This method results in a calibrated linear displacement sensor system with known quantifiable error. For the components used in this study, this error is on the order of 1 /spl mu/m. It is suggested that this or a similar method be used for calibration of linear displacement sensors to be used to measure micromotion of orthopaedic implants to ensure accuracy and reliability of data and interpreted results.
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用于微运动研究的线性位移传感器的校准
本文描述了一种线性位移传感器的校准方法,该方法包括1 /spl mu/m量级的可量化误差,并已被采用,以确保在模拟使用期间骨科植入物内微运动的准确测量。该方法得到了一个已知可量化误差的校准线性位移传感器系统。对于本研究中使用的组件,该误差约为1 /spl mu/m。建议采用这种或类似的方法校准用于测量骨科植入物微动的线性位移传感器,以确保数据和解释结果的准确性和可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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