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基于任务执行不确定性的下落跳中预测性运动控制的变化。

Changes in predictive motor control in drop-jumps based on uncertainties in task execution.

机构信息

Department of Sport Science, University of Freiburg, Germany.

出版信息

Hum Mov Sci. 2012 Feb;31(1):152-60. doi: 10.1016/j.humov.2011.04.006. Epub 2011 Jul 14.

Abstract

Drop-jumps are controlled by predictive and reactive motor strategies which differ with respect to the utilization of sensory feedback. With reaction, sensory feedback is integrated while performing the task. With prediction, sensory information may be used prior to movement onset. Certainty about upcoming events is important for prediction. The present study aimed at investigating how uncertainties in the task execution affect predictive motor control in drop-jumps. Ten healthy subjects (22±1 years, M±SD) participated. The subjects performed either (i) drop-jumps by knowing that they might had to switch to a landing movement upon an auditory cue, which was sometimes elicited prior to touch-down (uncertainty). In (ii), subjects performed drop-jumps by knowing that there would be no auditory cue and consequently no switch of the movement (certainty). The m. soleus EMG prior to touch-down was higher when subjects knew there would be no auditory cue compared to when subjects performed the same task but switching from drop-jump to landing was possible (uncertainty). The EMG was reversed in the late concentric phase, meaning that it was higher in the high uncertainty task. The results of the present study showed that the muscular activity was predictively adjusted according to uncertainties in task execution. It is argued that tendomuscular stiffness was the variable responsible for the adjustment of muscular activity. The required tendomuscular stiffness was higher in drop-jumps than in landings. Consequently, when it was not certain whether to jump or to land, muscular activity and therefore tendomuscular stiffness was reduced.

摘要

跳落是由预测性和反应性运动策略控制的,这两种策略在利用感觉反馈方面有所不同。在反应中,感觉反馈是在执行任务的过程中整合的。在预测中,感觉信息可能在运动开始之前就被使用了。对即将发生的事件的确定性对于预测很重要。本研究旨在调查任务执行中的不确定性如何影响跳落中的预测性运动控制。10 名健康受试者(22±1 岁,平均值±标准差)参与了研究。受试者执行以下两种跳落:(i)在知道他们可能必须在听到声音提示后切换到着陆动作的情况下进行跳落,而该声音提示有时在触地之前就会发出(不确定性)。在(ii)中,受试者在知道不会有听觉提示,因此不会改变运动的情况下进行跳落(确定性)。与执行同样的任务但可以从跳落切换到着陆的情况相比,受试者在知道不会有听觉提示时,触地前的比目鱼肌肌电图更高(不确定性)。肌电图在后期向心阶段反转,这意味着在高不确定性任务中更高。本研究的结果表明,肌肉活动根据任务执行中的不确定性进行了预测性调整。有人认为,肌肉紧张度是调整肌肉活动的变量。在跳落中所需的肌肉紧张度高于着陆。因此,当不确定是跳跃还是着陆时,肌肉活动因此肌肉紧张度降低。

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