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MATLAB Function from Multi-objective control in human walking: insight gained through simultaneous degradation of energetic and motor regulation systems

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DataCite Commons2020-08-26 更新2024-07-27 收录
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https://rs.figshare.com/articles/MATLAB_Function_from_Multi-objective_control_in_human_walking_insight_gained_through_simultaneous_degradation_of_energetic_and_motor_regulation_systems/9730745/1
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Minimization of metabolic energy is considered a fundamental principle of human locomotion, as demonstrated by an alignment between the preferred walking speed (PWS) and the speed incurring the lowest metabolic cost of transport. We aimed to (i) simultaneously disrupt metabolic cost and an alternate acute task requirement, namely speed error regulation, and (ii) assess whether the PWS could be explained on the basis of either optimality criterion in this new performance and energetic landscape. Healthy adults (<i>N </i>= 21) walked on an instrumented treadmill under normal conditions and, while negotiating a continuous gait perturbation, imposed leg-length asymmetry. Oxygen consumption, motion capture data and ground reaction forces were continuously recorded for each condition at speeds ranging from 0.6 to 1.8 m s<sup>−1</sup>, including the PWS. Both metabolic and speed regulation measures were disrupted by the perturbation (<i>p</i>
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The Royal Society
创建时间:
2019-08-26
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