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Executive function orchestrates regulation of task-relevant gait fluctuations

机译:执行功能协调与任务相关的步态波动的调节

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摘要

Humans apply a minimum intervention principle to regulate treadmill walking, rapidly correcting fluctuations in the task-relevant variable (step speed: SS) while ignoring fluctuations in the task-irrelevant variables (step time: ST; step length: SL). We examined whether the regulation of fluctuations in SS and not in ST and SL depends on high-level, executive function, processes. Young adults walked on a treadmill without a cognitive requirement and while performing the cognitive task of dichotic listening. SS fluctuations became less anti-persistent when performing dichotic listening, meaning that taxing executive function impaired the ability to rapidly correct speed deviations on subsequent steps. Conversely, performing dichotic listening had no effect on SL and ST persistent fluctuations. Findings suggest that high-level brain processes are involved only in regulating gait task-relevant variables.
机译:人类采用最小干预原理来调节跑步机的行走,从而迅速校正与任务相关的变量(步速:SS)的波动,而忽略与任务无关的变量(步长:ST;步长:SL)的波动。我们检查了SS波动的调节,而不是ST和SL波动的调节是否取决于高层的执行功能,过程。年轻人在没有认知要求的情况下在跑步机上行走,同时执行了二重听的认知任务。 SS波动在执行二重听时变得不那么持久,这意味着加重执行功能会削弱在后续步骤中快速纠正速度偏差的能力。相反,进行二分听对SL和ST的持续波动没有影响。研究结果表明,高级大脑过程仅参与调节与步态任务相关的变量。

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