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Walking running and resting under time distance and average speed constraints: optimality of walk–run–rest mixtures

机译:在时间距离和平均速度约束下的步行跑步和休息:步行-跑步-休息混合的最佳状态

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摘要

On a treadmill, humans switch from walking to running beyond a characteristic transition speed. Here, we study human choice between walking and running in a more ecological (non-treadmill) setting. We asked subjects to travel a given distance overground in a given allowed time duration. During this task, the subjects carried, and could look at, a stopwatch that counted down to zero. As expected, if the total time available were large, humans walk the whole distance. If the time available were small, humans mostly run. For an intermediate total time, humans often use a mixture of walking at a slow speed and running at a higher speed. With analytical and computational optimization, we show that using a walk–run mixture at intermediate speeds and a walk–rest mixture at the lowest average speeds is predicted by metabolic energy minimization, even with costs for transients—a consequence of non-convex energy curves. Thus, sometimes, steady locomotion may not be energy optimal, and not preferred, even in the absence of fatigue. Assuming similar non-convex energy curves, we conjecture that similar walk–run mixtures may be energetically beneficial to children following a parent and animals on long leashes. Humans and other animals might also benefit energetically from alternating between moving forward and standing still on a slow and sufficiently long treadmill.
机译:在跑步机上,人类从步行切换到以超过特定过渡速度的速度跑步。在这里,我们研究了人类在更加生态(非跑步机)环境下的步行和跑步之间的选择。我们要求受试者在给定的允许时间范围内在地面上行驶给定的距离。在执行此任务期间,受试者携带并可以观看秒表,该秒表的计数为零。不出所料,如果可用的总时间很大,则人类会走整个距离。如果可用时间很少,那么人类通常会奔跑。在总的中间时间中,人们经常混合使用慢速行走和高速度跑步。通过分析和计算优化,我们表明,通过代谢能量最小化,即使在瞬态成本的情况下,也可以预测使用中速步行混合和最低平均速度步行混合的混合物,这是非凸曲线的结果。因此,有时即使没有疲劳,稳定的运动可能也不是能量最佳的,也不是优选的。假设相似的非凸能量曲线,我们推测相似的步行混合可能对跟随父母的孩子和长牵引带的动物在能量上有益。在缓慢而足够长的跑步机上向前移动和静止不动时,人和其他动物也可能会从能量上受益。

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