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The musculoskeletal system of humans is not tuned to maximize the economy of locomotion

机译:人体的骨骼肌肉系统未进行调节以最大化运动的经济性

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Humans are known to have energetically optimal walking and running speeds at which the cost to travel a given distance is minimized. We hypothesized that "optimal" walking and running speeds would also exist at the level of individual locomotor muscles. Additionally, because humans are 60-70% more economical when they walk than when they run, we predicted that the different muscles would exhibit a greater degree of tuning to the energetically optimal speed during walking than during running. To test these hypotheses, we used electromyography to measure the activity of 13 muscles of the back and legs over a range of walking and running speeds in human subjects and calculated the cumulative activity required from each muscle to traverse a kilometer. We found that activity of each of these muscles was minimized at specific walking and running speeds but the different muscles were not tuned to a particular speed in either gait. Although humans are clearly highly specialized for terrestrial locomotion compared with other great apes, the results of this study indicate that our locomotor muscles are not tuned to specific walking or running speeds and, therefore, do not maximize the economy of locomotion. This pattern may have evolved in response to selection to broaden the range of sustainable running speeds, to improve performance in motor behaviors not related to endurance locomotion, or in response to selection for both.
机译:已知人类具有在能量上最佳的步行和奔跑速度,在该速度下,给定距离的行驶成本最小。我们假设在个体运动肌肉的水平上也存在“最佳”步行和奔跑速度。此外,由于人类走路时比跑步时省钱60-70%,因此我们预测,走路时比跑步时,不同的肌肉会表现出更大的能量调适度。为了检验这些假设,我们使用肌电图测量了人类受试者在步行和奔跑速度范围内背部和腿部13条肌肉的活动,并计算了每条肌肉穿越一公里所需的累积活动。我们发现,在特定的步行和跑步速度下,这些肌肉中的每一个的活动都被最小化,但是在任何步态中,不同的肌肉都没有被调到特定的速度。尽管与其他大猿相比,人类显然非常擅长于地面运动,但这项研究的结果表明,我们的运动肌肉并未针对特定的步行或跑步速度进行调节,因此无法最大程度地提高运动的经济性。这种模式可能已响应选择而发展,以扩大可持续的行驶速度范围,改善与耐力运动无关的运动行为的性能,或者响应于两者的选择。

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