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Mechanical work for step-to-step transitions is a major determinant of the metabolic cost of human walking

机译:逐步过渡的机械功是人类步行代谢成本的主要决定因素

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摘要

In the single stance phase of walking, center of mass motion resembles that of an inverted pendulum. Theoretically, mechanical work is not necessary for producing the pendular motion, but work is needed to redirect the center of mass velocity from one pendular arc to the next during the transition between steps. A collision model predicts a rate of negative work proportional to the fourth power of step length. Positive work is required to restore the energy lost, potentially exacting a proportional metabolic cost. We tested these predictions with humans (N=9) walking over a range of step lengths (0.4-1.1m) while keeping step frequency fixed at 1.8 Hz. We measured individual limb external mechanical work using force plates, and metabolic rate using indirect calorimetry. As predicted, average negative and positive external mechanical work rates increased with the fourth power of step length (from 1 W to 38 W, r(2)=0.96). Metabolic rate also increased with the fourth power of step length (from 7 W to 379 W; r(2)=0.95), and linearly with mechanical work rate. Mechanical work for step-to-step transitions, rather than pendular motion itself, appears to be a major determinant of the metabolic cost of walking.
机译:在步行的单步姿态阶段,质心运动类似于倒立摆的质心运动。从理论上讲,机械操作对于产生摆动运动不是必需的,但是在步骤之间的过渡期间,需要进行工作以将质心从一个摆动弧重定向到另一个摆动弧。碰撞模型预测负功的速率与步长的四次方成正比。需要积极的工作来恢复失去的能量,潜在地增加成比例的代谢成本。我们以人类(N = 9)在一定步长范围(0.4-1.1m)上行走,同时将步频固定为1.8 Hz的情况下测试了这些预测。我们使用测力板测量了肢体的外部机械功,并使用间接量热法测量了代谢率。如预期的那样,平均负外部机械工作速率随步长的四次幂而增加(从1 W到38 W,r(2)= 0.96)。代谢率也随着步长的四次幂(从7 W增加到379 W; r(2)= 0.95)而增加,并且与机械工作率呈线性关系。逐步转换的机械工作,而不是摆动运动本身,似乎是步行代谢成本的主要决定因素。

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