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使用机器人假肢模拟器模拟商业假肢的有效踝关节刚度。

Emulating the Effective Ankle Stiffness of Commercial Prosthetic Feet Using a Robotic Prosthetic Foot Emulator.

机构信息

Center for Limb Loss and Mobility, VA Puget Sound Health Care System, 1660 South Columbian Way (MS 151), Seattle, WA 98108; Department of Rehabilitation Medicine, University of Washington, 1959 NE Pacific Street, Box 356490, Seattle, WA 98195.

Human Motion Technologies LLC d/b/a Humotech, 630 William Pitt Way U-PARC, Building A2, Pittsburgh, PA 15238.

出版信息

J Biomech Eng. 2022 Nov 1;144(11). doi: 10.1115/1.4054834.

Abstract

Prosthetic foot selection for individuals with lower limb amputation relies primarily on clinician judgment. The prosthesis user rarely has an opportunity to provide experiential input into the decision by trying different feet. A prosthetic foot emulator (PFE) is a robotic prosthetic foot that could facilitate prosthesis users' ability to trial feet with different mechanical characteristics. Here, we introduce a procedure by which a robotic PFE is configured to emulate the sagittal plane effective ankle stiffness of a range of commercial prosthetic forefeet. Mechanical testing was used to collect data on five types of commercial prosthetic feet across a range of foot sizes and intended user body weights. Emulated forefoot profiles were parameterized using Bezier curve fitting on ankle torque-angle data. Mechanical testing was repeated with the PFE, across a subset of emulated foot conditions, to assess the accuracy of the emulation. Linear mixed-effects regression and Bland-Altman Limits of Agreement analyses were used to compare emulated and commercial ankle torque-angle data. Effective ankle stiffness of the emulated feet was significantly associated with the corresponding commercial prosthetic feet (p <0.001). On average, the emulated forefeet reproduced the effective ankle stiffness of corresponding commercial feet within 1%. Furthermore, differences were independent of prosthetic foot type, foot size, or user body weight. These findings suggest that commercial prosthetic foot properties can be effectively mimicked by a PFE, which is the important first step toward enabling prosthesis users to quickly trial different feet using a PFE as part of prosthetic foot prescription.

摘要

假肢足部选择主要依赖于临床医生的判断。假肢使用者很少有机会通过尝试不同的假肢来为决策提供经验性的输入。假肢足部模拟器 (PFE) 是一种机器人假肢,可以帮助假肢使用者试用具有不同机械特性的假肢。在这里,我们介绍了一种方法,通过该方法可以配置机器人 PFE 来模拟各种商业假肢前足的矢状面有效踝关节刚度。机械测试用于收集不同脚尺寸和预期使用者体重范围内的五种商业假肢的踝关节扭矩-角度数据。使用贝塞尔曲线拟合对踝关节扭矩-角度数据进行参数化,以模拟前足轮廓。使用 PFE 对模拟足部条件的子集进行机械测试,以评估模拟的准确性。线性混合效应回归和 Bland-Altman 协议限差分析用于比较模拟和商业踝关节扭矩-角度数据。模拟足部的有效踝关节刚度与相应的商业假肢显著相关 (p <0.001)。平均而言,模拟前足在 1%以内再现了相应商业足部的有效踝关节刚度。此外,差异与假肢足部类型、脚尺寸或使用者体重无关。这些发现表明,PFE 可以有效地模拟商业假肢的特性,这是使用 PFE 让假肢使用者快速试用不同假肢的重要第一步,也是假肢足部处方的一部分。

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