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Energy neutral: the human foot and ankle subsections combine to produce near zero net mechanical work during walking

机译:能量中立:人的脚和脚踝部分相结合在行走过程中产生接近零的净机械功

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摘要

The human foot and ankle system is equipped with structures that can produce mechanical work through elastic (e.g., Achilles tendon, plantar fascia) or viscoelastic (e.g., heel pad) mechanisms, or by active muscle contractions. Yet, quantifying the work distribution among various subsections of the foot and ankle can be difficult, in large part due to a lack of objective methods for partitioning the forces acting underneath the stance foot. In this study, we deconstructed the mechanical work production during barefoot walking in a segment-by-segment manner (hallux, forefoot, hindfoot, and shank). This was accomplished by isolating the forces acting within each foot segment through controlling the placement of the participants’ foot as it contacted a ground-mounted force platform. Combined with an analysis that incorporated non-rigid mechanics, we quantified the total work production distal to each of the four isolated segments. We found that various subsections within the foot and ankle showed disparate work distribution, particularly within structures distal to the hindfoot. When accounting for all sources of positive and negative work distal to the shank (i.e., ankle joint and all foot structures), these structures resembled an energy-neutral system that produced net mechanical work close to zero (−0.012 ± 0.054 J/kg).
机译:人的脚和脚踝系统装备有可以通过弹性(例如跟腱,足底筋膜)或粘弹性(例如脚跟垫)机制或通过主动肌肉收缩产生机械功的结构。但是,很难对脚和脚踝各个部分之间的功分布进行量化,这在很大程度上是由于缺乏客观的方法来分配作用在脚下姿势的力。在这项研究中,我们以分段的方式(hallux,前脚,后脚和小腿)解构了赤脚行走过程中的机械功生产。这是通过控制参与者的脚在接触地面力量平台时的放置位置来隔离作用在每个脚部段中的力来实现的。结合结合非刚性力学的分析,我们量化了四个孤立部分中每个部分的总工作量。我们发现脚和脚踝内的各个子部分显示出不同的功分布,尤其是在后脚远侧的结构内。当考虑到小腿远端的正功和负功的所有来源(即,踝关节和所有脚部结构)时,这些结构类似于能量中性系统,产生的净机械功接近于零(-0.012±0.054 J / kg) 。

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