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经股假肢模拟器与截肢者:步态中的地面反作用力和时空参数

Transfemoral prosthetic simulators versus amputees: ground reaction forces and spatio-temporal parameters in gait.

作者信息

Kobayashi Toshiki, Jor Abu, He Yufan, Hu Mingyu, Koh Mark W P, Hisano Genki, Hara Takeshi, Hobara Hiroaki

机构信息

Department of Biomedical Engineering, Faculty of Engineering, The Hong Kong Polytechnic University, Hong Kong, People's Republic of China.

Department of Leather Engineering, Faculty of Mechanical Engineering, Khulna University of Engineering & Technology, Khulna, Bangladesh.

出版信息

R Soc Open Sci. 2024 Mar 27;11(3):231854. doi: 10.1098/rsos.231854. eCollection 2024 Mar.

Abstract

This study aimed to compare the ground reaction forces (GRFs) and spatio-temporal parameters as well as their asymmetry ratios in gait between individuals wearing a transfemoral prosthetic simulator (TFSim) and individuals with unilateral transfemoral amputation (TFAmp) across a range of walking speeds (2.0-5.5 km h). The study recruited 10 non-disabled individuals using TFSim and 10 individuals with unilateral TFAmp using a transfemoral prosthesis. Data were collected using an instrumented treadmill with built-in force plates, and subsequently, the GRFs and spatio-temporal parameters, as well as their asymmetry ratios, were analysed. When comparing the TFSim and TFAmp groups, no significant differences were found among the gait parameters and asymmetry ratios of all tested metrics except the vertical GRFs. The TFSim may not realistically reproduce the vertical GRFs during the weight acceptance and push-off phases. The structural and functional variations in prosthetic limbs and components between the TFSim and TFAmp groups may be primary contributors to the difference in the vertical GRFs. These results suggest that TFSim might be able to emulate the gait of individuals with TFAmp regarding the majority of spatio-temporal and GRF parameters. However, the vertical GRFs of TFSim should be interpreted with caution.

摘要

本研究旨在比较穿戴经股假肢模拟器(TFSim)的个体与单侧经股截肢(TFAmp)个体在一系列步行速度(2.0 - 5.5千米/小时)下的地面反作用力(GRF)、时空参数及其步态不对称率。该研究招募了10名使用TFSim的非残疾个体和10名使用经股假肢的单侧TFAmp个体。使用带有内置测力板的仪器化跑步机收集数据,随后分析GRF、时空参数及其不对称率。在比较TFSim组和TFAmp组时,除垂直GRF外,所有测试指标的步态参数和不对称率均未发现显著差异。TFSim可能无法真实再现承重和蹬离阶段的垂直GRF。TFSim组和TFAmp组之间假肢肢体和组件的结构及功能差异可能是垂直GRF差异的主要原因。这些结果表明,TFSim在大多数时空和GRF参数方面或许能够模拟TFAmp个体的步态。然而,对TFSim的垂直GRF应谨慎解读。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/684a/10966393/716bc8683684/rsos.231854.f001.jpg

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