首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Estimation of the walking speed of individuals with transfemoral amputation from a single prosthetic shank-mounted IMU
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Estimation of the walking speed of individuals with transfemoral amputation from a single prosthetic shank-mounted IMU

机译:从单一假肢柄部截肢截肢的个体步行速度估算

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摘要

Microprocessor prosthetic knees, able to restore the gait of people with transfemoral amputation, are now often equipped with sensors embedded in the prosthetic shank, which could be used to assess some gait characteristics during real-life activities. In particular, an estimation of the walking speed during the locomotion of those subjects would be a relevant indicator of the performance. However, if methods have already been proposed in the literature to compute this walking speed, none are directly usable in this context and with this population. For these reasons, the current study proposed to estimate the instantaneous walking speed with a shank-embedded Inertial Measurement Units based on a biomechanical model of the prosthetic lower limb. Averaged walking speed estimation has been quantified for nine individuals with transfemoral amputation walking on a treadmill at different speeds and slopes when wearing an instrumented knee ankle prosthesis. Experimental results demonstrated the ability of the model to estimate the walking speed with an accuracy of 9% (normalized root mean squared errors over all the patients), which is consistent with previous reported walking speed estimation errors. In addition, as the walking speed estimation is instantaneous, the proposed method can provide the estimation by the end of the stance phase, which is an originality compared to other methods based on step length estimation. The present method is relevant for the estimation of walking speed during real-life activities of above-knee amputees opening the way to direct activity monitoring from the prosthesis.
机译:微处理器的假肢膝盖,能够恢复有经常截肢的人的步态,现在经常配备嵌入在假体柄中的传感器,可用于评估现实生活中的一些步态特征。特别地,在这些受试者的运动期间对步行速度的估计将是性能的相关指标。但是,如果在文献中已经提出了方法来计算这种步行速度,则不会在此背景下直接可用,并且具有这种人口。由于这些原因,目前的研究提出基于假体下肢的生物力学模型来估计具有柄嵌入式惯性测量单元的瞬时步行速度。在佩戴仪表膝关节踝关节假体时,平均步行速度估计已经为九个个人以不同的速度和斜坡行走的跑步截肢。实验结果表明了模型估计步行速度的能力,精度为9%(所有患者的归一化的根均匀误差),这与先前报告的步行速度估计误差一致。另外,随着步行速度估计是瞬时的,所提出的方法可以通过基于步长估计的其他方法相比,通过姿势阶段的末端提供估计。本方法与在膝关节中的现实生活中估算步行速度的估计,这些活动开启了从假肢直接活动监测的方式。

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