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A simple model of mechanical effects to estimate metabolic cost of human walking

机译:一个简单的机械效应模型,用于估算人类步行的代谢成本

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Since the advent of energy measurement devices, gait experiments have shown that energetic economy has a large influence on human walking behavior. However, few cost models have attempted to capture the major energy components under comprehensive walking conditions. Here we present a simple but unified model that uses walking mechanics to estimate metabolic cost at different speeds and step lengths and for six other biomechanically-relevant gait experiments in literature. This includes at various gait postures (e.g. extra foot lift), anthropometric dimensions (e.g. added mass), and reduced gravity conditions, without the need for parameter tuning to design new gait trajectories. Our results suggest that the metabolic cost of walking can largely be explained by the linear combination of four costs—swing and torso dynamics, center of mass velocity redirection, ground clearance, and body weight support. The overall energetic cost is a tradeoff among these separable components, shaped by how they manifest under different walking conditions.
机译:自从能量测量设备问世以来,步态实验表明,精力充沛的经济活动对人类的步行行为影响很大。但是,很少有成本模型试图在综合步行条件下捕获主要的能源成分。在这里,我们提出了一个简单但统一的模型,该模型使用步行力学来估算不同速度和步长下的代谢成本,以及文献中其他六个与生物力学相关的步态实验。这包括各种步态姿势(例如,额外的脚抬),人体测量尺寸(例如,增加的质量)和减少的重力条件,而无需进行参数调整来设计新的步态轨迹。我们的研究结果表明,步行的代谢成本在很大程度上可以由四个成本的线性组合来解释-摇摆和躯干动力学,质心速度重定向,离地间隙和体重支持。总的能量消耗是这些可分离组件之间的权衡,取决于它们在不同步行条件下的表现方式。

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