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用于假肢控制应用的连续变化运动学分析。

Analysis of Continuously Varying Kinematics for Prosthetic Leg Control Applications.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2021;29:262-272. doi: 10.1109/TNSRE.2020.3045003. Epub 2021 Mar 1.

Abstract

Powered prosthetic legs can improve the quality of life for people with transfemoral amputations by providing net positive work at the knee and ankle, reducing the effort required from the wearer, and making more tasks possible. However, the controllers for these devices use finite state machines that limit their use to a small set of pre-defined tasks that require many hours of tuning for each user. In previous work, we demonstrated that a continuous parameterization of joint kinematics over walking speeds and inclines provides more accurate predictions of reference kinematics for control than a finite state machine. However, our previous work did not account for measurement errors in gait phase, walking speed, and ground incline, nor subject-specific differences in reference kinematics, which occur in practice. In this work, we conduct a pilot experiment to characterize the accuracy of speed and incline measurements using sensors onboard our prototype prosthetic leg and simulate phase measurements on ten able-bodied subjects using archived motion capture data. Our analysis shows that given demonstrated accuracy for speed, incline, and phase estimation, a continuous parameterization provides statistically significantly better predictions of knee and ankle kinematics than a comparable finite state machine, but both methods' primary source of predictive error is subject deviation from average kinematics.

摘要

动力假肢可以通过在膝关节和踝关节处提供净正功、减少使用者的体力消耗以及实现更多的任务,从而提高股骨截肢患者的生活质量。然而,这些设备的控制器使用有限状态机,这将它们的使用限制在一小部分预先定义的任务中,每个用户都需要数小时的调整。在之前的工作中,我们证明了在行走速度和坡度范围内对关节运动学进行连续参数化比有限状态机更能准确预测参考运动学。然而,我们之前的工作没有考虑到步态相位、行走速度和地面坡度的测量误差,也没有考虑到参考运动学的个体差异,而这些差异在实际中是存在的。在这项工作中,我们进行了一项初步实验,以表征我们原型假肢上的传感器测量速度和坡度的准确性,并使用存档的运动捕捉数据模拟十位健全受试者的相位测量。我们的分析表明,给定速度、坡度和相位估计的演示精度,连续参数化比可比的有限状态机提供了统计上显著更好的膝关节和踝关节运动学预测,但两种方法的主要预测误差来源是个体与平均运动学的偏差。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e94/7920935/f52a37c3b7a0/nihms-1655190-f0001.jpg

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