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负载携带和假肢足部类型对个体肌肉及假肢足部在身体支撑和推进方面贡献的影响。

The influence of load carriage and prosthetic foot type on individual muscle and prosthetic foot contributions to body support and propulsion.

作者信息

Lefranc Aude S, Klute Glenn K, Neptune Richard R

机构信息

Walker Department of Mechanical Engineering, The University of Texas at Austin, Austin, TX, USA.

Department of Veteran Affairs, Center for Limb Loss and MoBility, Seattle, WA, USA; Department of Mechanical Engineering, University of Washington, Seattle, WA, USA.

出版信息

J Biomech. 2024 Dec;177:112379. doi: 10.1016/j.jbiomech.2024.112379. Epub 2024 Oct 20.

Abstract

Individuals with transtibial amputation (TTA) experience altered gait mechanics, which are primarily attributed to the functional loss of the ankle plantarflexors. The plantarflexors contribute to body support and propulsion and play an important role in adapting to different load carriage conditions. However, how muscle function is altered across different prosthetic foot types and load carriage scenarios for individuals with TTA remains unclear. This study used musculoskeletal modeling and simulation of human movement in OpenSim to investigate the effects of a range of prosthetic feet and load conditions on individual muscle and prosthetic foot contributions to body support and propulsion. Twenty walking trials were collected from five individuals with TTA, consisting of five loading conditions (no-load; 30 lbs (13.6 kg) carried as a front-load, back-load, intact-side-load and residual-side-load) while wearing four prosthetic feet (their passive standard of care (SOC) foot, their SOC foot one category stiffer, their SOC foot with a heel stiffening wedge, and a dual-keel foot). Two participants also wore a powered ankle-foot prosthesis, thus completing an additional five trials each. The results indicated that the front-load condition may be more challenging because it required overall increased muscle contributions to body support and propulsion. However, the front- and residual-side-loads required reduced intact-side plantarflexor contributions to support and propulsion, and thus may be advantageous for individuals with plantarflexor weakness. Further, the large variability across contributions suggests that individuals with TTA may rely on a variety of compensatory mechanisms depending on the load condition and prosthetic foot used.

摘要

经胫截肢(TTA)患者的步态力学发生改变,这主要归因于踝跖屈肌的功能丧失。跖屈肌有助于身体支撑和推进,在适应不同的负荷携带条件中发挥重要作用。然而,对于TTA患者,不同类型的假肢脚和负荷携带场景下肌肉功能如何改变仍不清楚。本研究使用OpenSim中的人体运动肌肉骨骼建模和模拟,来研究一系列假肢脚和负荷条件对个体肌肉以及假肢脚在身体支撑和推进方面贡献的影响。从五名TTA患者中收集了20次步行试验,包括五种负荷条件(无负荷;作为前负荷、后负荷、健侧负荷和残侧负荷携带30磅(13.6千克)),同时穿着四种假肢脚(他们的被动标准护理(SOC)脚、比SOC脚硬一级的脚、带有足跟加固楔块的SOC脚和双龙骨脚)。两名参与者还佩戴了动力踝足假肢,因此每人又完成了五次试验。结果表明,前负荷条件可能更具挑战性,因为它需要肌肉对身体支撑和推进的总体贡献增加。然而,前负荷和残侧负荷需要健侧跖屈肌在支撑和推进方面的贡献减少,因此对于跖屈肌无力的个体可能是有利的。此外,贡献的巨大变异性表明,TTA患者可能根据负荷条件和使用的假肢脚依赖多种补偿机制。

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