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首页> 外文期刊>Gait & posture >Net external energy of the biologic and prosthetic ankle during gait initiation.
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Net external energy of the biologic and prosthetic ankle during gait initiation.

机译:步态启动过程中生物和修复脚踝的净外部能量。

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摘要

The net external energy of the biologic human ankle joint and of some lower limb prosthetic ankle-foot systems was examined during gait initiation. The purpose of the study was to better understand the ankle's behavior during the acceleration phase of walking for use in the design of improved lower limb prostheses and orthoses. Quantitative gait data were collected from 10 able-bodied subjects and 10 persons with unilateral transtibial amputations during gait initiation. The behaviors of the biologic and prosthetic 'ankle' joints were examined by analyzing the relationship between sagittal plane ankle angles and moments. Net external energy at the ankle was estimated by calculating the area under the moment versus angle curves (hysteresis) created during the loading and unloading phases. Results indicate that able-bodied persons utilize energy input from the trailing ankle after the first step is made in gait initiation, most likely to help transition the body into steady-state walking. The passive prosthetic ankle-foot systems tested were unable to put energy into the system during gait initiation.
机译:在步态启动过程中检查了生物性人类踝关节和某些下肢假肢踝足系统的净外部能量。该研究的目的是更好地了解步行加速阶段的脚踝行为,以用于设计改进的下肢假肢和矫形器。在步态起始期间,从10名身体健全的受试者和10例单侧胫骨截肢患者收集了步态定量数据。通过分析矢状平面踝关节角度和力矩之间的关系,检查了生物学和假肢“踝关节”的行为。脚踝处的净外部能量是通过计算在加载和卸载阶段创建的力矩与角度曲线(磁滞)下的面积来估算的。结果表明,健壮的人在步态起始的第一步完成后便利用了来自后踝的能量输入,最有可能帮助身体转变为稳态行走。被测试的被动假肢脚踝系统在步态启动期间无法将能量注入系统。

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