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An Inductive Sensing System to Measure In-Socket Residual Limb Displacements for People Using Lower-Limb Prostheses

机译:感应传感器系统用于测量使用下肢假肢的人群的残余残肢位移

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摘要

The objective of this research was to assess the performance of an embedded sensing system designed to measure the distance between a prosthetic socket wall and residual limb. Low-profile inductive sensors were laminated into prosthetic sockets and flexible ferromagnetic targets were created from elastomeric liners with embedded iron particles for four participants with transtibial amputation. Using insights from sensor performance testing, a novel calibration procedure was developed to quickly and accurately calibrate the multiple embedded sensors. The sensing system was evaluated through laboratory tests in which participants wore sock combinations with three distinct thicknesses and conducted a series of activities including standing, walking, and sitting. When a thicker sock was worn, the limb typically moved further away from the socket and peak-to-peak displacements decreased. However, sensors did not measure equivalent distances or displacements for a given sock combination, which provided information regarding the fit of the socket and how a sock change intervention influenced socket fit. Monitoring of limb–socket displacements may serve as a valuable tool for researchers and clinicians to quantitatively assess socket fit.
机译:这项研究的目的是评估嵌入式测量系统的性能,该系统旨在测量假牙窝壁与残肢之间的距离。将低调感应传感器层压到假肢插座中,并用具有嵌入铁颗粒的弹性衬里为四名胫骨截肢参与者创建柔性铁磁靶。利用传感器性能测试的见识,开发了一种新颖的校准程序,可以快速而准确地校准多个嵌入式传感器。通过实验室测试对传感系统进行了评估,参与者穿着三种不同厚度的袜子组合,并进行了一系列的活动,包括站立,行走和坐下。当穿上较厚的袜子时,肢体通常会从插座移开,峰顶位移减小。但是,对于给定的袜子组合,传感器无法测量等效的距离或位移,从而提供了有关承窝的贴合度以及袜子更换干预如何影响承窝贴合度的信息。监测肢窝位移可能是研究人员和临床医生定量评估窝配合的有价值的工具。

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