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Ankle and foot power in gait analysis: Implications for science, technology and clinical assessment

机译:步态分析中的脚踝和脚力量:对科学,技术和临床评估的影响

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In human gait analysis studies, the entire foot is typically modeled as a single rigid-body segment; however, this neglects power generated/absorbed within the foot. Here we show how treating the entire foot as a rigid body can lead to misunderstandings related to (biological and prosthetic) foot function, and distort our understanding of ankle and muscle-tendon dynamics. We overview various (unconventional) inverse dynamics methods for estimating foot power, partitioning ankle vs. foot contributions, and computing combined anklefoot power. We present two case study examples. The first exemplifies how modeling the foot as a single rigid-body segment causes us to overestimate (and overvalue) muscle-tendon power generated about the biological ankle (in this study by up to 77%), and to misestimate (and misinform on) foot contributions; corroborating findings from previous multi-segment foot modeling studies. The second case study involved an individual with transtibial amputation walking on 8 different prosthetic feet. The results exemplify how assuming a rigid foot can skew comparisons between biological and prosthetic limbs, and lead to incorrect conclusions when comparing different prostheses/interventions. Based on analytical derivations, empirical findings and prior literature we recommend against computing conventional ankle power (between shank-foot). Instead, we recommend using an alternative estimate of power generated about the ankle joint complex (between shank-calcaneus) in conjunction with an estimate of foot power (between calcaneus-ground); or using a combined anklefoot power calculation. We conclude that treating the entire foot as a rigid-body segment is often inappropriate and illadvised. Including foot power in biomechanical gait analysis is necessary to enhance scientific conclusions, clinical evaluations and technology development. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在人体步态分析研究中,整个脚通常被建模为单个刚体段;然而,这忽略了在脚内产生的功率/吸收。在这里,我们展示了如何将整个脚作为刚体对刚体的误解可以导致(生物和假肢)脚功能,并扭曲我们对踝关节和肌肉肌腱动态的理解。我们概述了各种(非常规)的逆动力学方法,用于估计脚功率,分区脚踝与足部贡献,以及计算组合Anklefoot功率。我们提出了两种案例研究示例。首先举例说明了脚的尺寸如何作为单个刚体段,使我们能够高估(和高估)肌肉 - 肌腱电力,产生关于生物踝(本研究高达77%),并逍遥法外(和误导)足贡献;从以前的多段脚造型研究中的证实调查结果。第二种案例研究涉及一个具有剧本截肢的个体,在8个不同的假肢脚下行走。结果举例说明了假设刚性脚可以歪斜生物和假肢之间的比较,并且在比较不同的假体/干预时会出现不正确的结论。基于分析衍生,实证发现和现有文献,我们建议对计算传统的脚踝功率(柄脚之间)。相反,我们建议使用关于脚踝关节复合体(Shank-Calceaneus)的替代估计,与脚功率(在Calceane-Grount)之间的估计;或者使用组合的Anklefoot功率计算。我们得出结论,将整个脚视为刚性身体部门通常不合适和不利。包括生物力学步态分析中的脚功率是为了提高科学结论,临床评估和技术发展。 (c)2018年elestvier有限公司保留所有权利。

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