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首页> 外文期刊>Journal of Biomechanics >Energy optimization is a major objective in the real-time control of step width in human walking
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Energy optimization is a major objective in the real-time control of step width in human walking

机译:能量优化是人行道上实时控制步进宽度的主要目标

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摘要

People prefer to move in energetically optimal ways during walking. We recently found that this preference arises not just through evolution and development, but that the nervous system will continuously optimize step frequency in response to new energetic cost landscapes. Here we tested whether energy optimization is also a major objective in the nervous system's real-time control of step width using a device that can reshape the relationship between step width and energetic cost, shifting people's energy optimal step width. We accomplished this by changing the walking incline to apply an energetic penalty as a function of step width. We found that people didn't spontaneously initiate energy optimization, but instead required experience with a lower energetic cost step width. After initiating optimization, people adapted, on average, 3.5 standard deviations of their natural step width variability towards the new energy optimal width. Within hundreds of steps, they updated this as their new preferred width and rapidly returned to it when perturbed away. This new preferred width reduced energetic cost by roughly 14%, however, it was slightly narrower than the energetically optimal width, possibly due to non-energy objectives that may contribute to the nervous system's control of step width. Collectively, these findings suggest that the nervous systems of able-bodied people can continuously optimize energetic cost to determine preferred step width. (C) 2019 Elsevier Ltd. All rights reserved.
机译:人们宁愿在步行期间能够在能量上发动。我们最近发现,这一优选不仅仅是通过进化和发展,而是神经系统将响应新的能量成本景观持续优化阶梯频率。在这里,我们测试了能量优化是否也是通过可以重塑步进宽度和能量成本之间的关系的设备来实时控制步进宽度的主要目标,使人们的能量最佳步长。我们通过改变行走倾斜来实现这一目标,以施加能量惩罚作为一步宽度的函数。我们发现人们没有自发地启动能量优化,而是需要较低的能量成本步长的经验。在启动优化后,人们平均调整,平均,其自然一步宽度的标准偏差为新的能量最佳宽度。在数百个步骤中,他们将此更新为新的首选宽度,并在扰乱时迅速返回。这种新的优选宽度减少了大量14%,但是,它比能量最佳宽度略微窄,可能是由于可能导致神经系统对步宽的控制有助于的非能量目标。总的来说,这些研究结果表明,能够致力于优化的能力系统的神经系统可以连续优化能量成本以确定优选的步长。 (c)2019年elestvier有限公司保留所有权利。

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