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The Throw-and-Catch Model of Human Gait: Evidence from Coupling of Pre-Step Postural Activity and Step Location

机译:人的步态一掷一捕模型:前步姿势活动与步态位置耦合的证据

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摘要

Postural activity normally precedes the lift of a foot from the ground when taking a step, but its function is unclear. The throw-and-catch hypothesis of human gait proposes that the pre-step activity is organized to generate momentum for the body to fall ballistically along a specific trajectory during the step. The trajectory is appropriate for the stepping foot to land at its intended location while at the same time being optimally placed to catch the body and regain balance. The hypothesis therefore predicts a strong coupling between the pre-step activity and step location. Here we examine this coupling when stepping to visually-presented targets at different locations. Ten healthy, young subjects were instructed to step as accurately as possible onto targets placed in five locations that required either different step directions or different step lengths. In 75% of trials, the target location remained constant throughout the step. In the remaining 25% of trials, the intended step location was changed by making the target jump to a new location 96 ms ± 43 ms after initiation of the pre-step activity, long before foot lift. As predicted by the throw-and-catch hypothesis, when the target location remained constant, the pre-step activity led to body momentum at foot lift that was coupled to the intended step location. When the target location jumped, the pre-step activity was adjusted (median latency 223 ms) and prolonged (on average by 69 ms), which altered the body’s momentum at foot lift according to where the target had moved. We conclude that whenever possible the coupling between the pre-step activity and the step location is maintained. This provides further support for the throw-and-catch hypothesis of human gait.
机译:采取脚步时,姿势活动通常先于脚从地面抬起,但其功能尚不清楚。人类步态的“一掷一捕”假说提出,踏步前的活动要组织起来,以产生使人体在踏步过程中沿特定轨迹弹道下落的动量。该轨迹适合于踩脚降落在其预期位置,同时最佳放置以抓住身体并恢复平衡。因此,该假设预测了前活动和脚位置之间的强耦合。在这里,我们在步入不同位置的视觉目标时会检查这种耦合。指示十名健康的年轻受试者尽可能准确地踩到放置在五个位置的目标上,这些位置需要不同的步长方向或不同的步长。在75%的试验中,目标位置在整个步骤中保持不变。在剩余的25%的试验中,通过在远距离举足动作开始前步骤活动后96毫秒±43毫秒使目标跳至新位置,从而改变了预期的脚步位置。正如掷球和接球假说所预测的那样,当目标位置保持恒定时,踩踏前的活动会导致抬脚时的身体动量与预期的踏步位置相关联。当目标位置跳跃时,会调整前步活动(平均等待时间223毫秒)并延长(平均延长69毫秒),这会根据目标的移动位置来改变脚踩脚步时的身体动量。我们得出的结论是,只要有可能,就可以维持前步骤活动与步骤位置之间的耦合。这为人的步态“一掷一捕”假说提供了进一步的支持。

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