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Smart Crutches: Towards Instrumented Crutches for Rehabilitation and Exoskeletons-Assisted Walking

机译:智能拐杖:转向康复和外骨骼辅助步行的器械拐杖

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Recording 3D ground reaction forces through instrumented crutches can assist patients undergoing ambulatory rehabilitation as well as help roboticists develop new assistive controllers for their exoskeletons. Current methods to measure the amount of weight a patient exerts on their limbs are either inaccurate, or not feasible outside of ideal laboratory conditions. This paper introduces Smart Crutches, an instrumented crutch system capable of measuring the weight that a patient places on his/her lower extremities and providing vibratory feedback in response to the measured weight. The device was calibrated using a motion capture system and force plates. Linear regression and support vector regression (SVR) were used for calibration, and 10-fold cross-validation was applied to estimate the system's accuracy. Results indicate that machine learning regression methods may lead to improved accuracy, but the choice of the kernel function is critical. Gaussian kernel yielded root-mean-square errors (RSME) of 2.5N or less relative to force plates, while other kernel functions produced more inconsistent and less accurate results. Instrumented crutches may be a valid alternative to force plates for estimating ground reaction forces in crutch gait.
机译:通过仪器拐杖记录3D地面反作用力可以帮助正在进行门诊康复的患者,也可以帮助机器人专家为其外骨骼开发新的辅助控制器。当前测量患者肢体重量的方法不准确,或者在理想的实验室条件下不可行。本文介绍了智能拐杖,它是一种仪器化的拐杖系统,能够测量患者下肢放置的体重并根据所测得的体重提供振动反馈。使用运动捕捉系统和测力板对设备进行了校准。使用线性回归和支持向量回归(SVR)进行校准,并应用10倍交叉验证来评估系统的准确性。结果表明,机器学习回归方法可能会提高准确性,但是核函数的选择至关重要。高斯内核产生的相对于力板的均方根误差(RSME)为2.5N或更小,而其他内核函数产生的结果更加不一致且准确性较低。仪表式拐杖可能是测力板的有效替代品,用于估计拐杖步态中的地面反作用力。

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