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Executive control and working memory are involved in sub-second repetitive motor timing

机译:亚秒级重复电机计时涉及执行控制和工作记忆

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摘要

The nature of the relationship between timing and cognition remains poorly understood. Cognitive control is known to be involved in discrete timing tasks involving durations above 1 s, but has not yet been demonstrated for repetitive motor timing below 1 s. We examined the latter in two continuation tapping experiments, by varying the cognitive load in a concurrent task. In Experiment 1, participants repeated a fixed three finger sequence (low executive load) or a pseudorandom sequence (high load) with either 524-, 733-, 1024- or 1431-ms inter-onset intervals (IOIs). High load increased timing variability for 524 and 733-ms IOIs but not for the longer IOIs. Experiment 2 attempted to replicate this finding for a concurrent memory task. Participants retained three letters (low working memory load) or seven letters (high load) while producing intervals (524- and 733-ms IOIs) with a drum stick. High load increased timing variability for both IOIs. Taken together, the experiments demonstrate that cognitive control processes influence sub-second repetitive motor timing.
机译:时间和认知之间的关系的性质仍然知之甚少。认知控制涉及持续时间超过1秒的离散计时任务,但尚未证明重复运动计时低于1秒的认知控制。我们通过更改并发任务中的认知负荷,在两个连续攻丝实验中检查了后者。在实验1中,参与者以524-,733-,1024-或1431-ms的发作间隔(IOI)重复了固定的三指序列(低执行负荷)或伪随机序列(高负荷)。高负载增加了524和733毫秒IOI的时序可变性,但不适用于更长的IOI。实验2尝试针对并行内存任务复制此发现。参与者保留了三个字母(低工作记忆负荷)或七个字母(高负荷),同时用鼓棒产生了间隔(524和733毫秒IOI)。高负载增加了两个IOI的时序可变性。两者合计,实验表明认知控制过程会影响亚秒级重复运动时间。

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