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感觉运动同步中的时间整合。

Temporal integration in sensorimotor synchronization.

机构信息

Ludwig-Maximilians University and Academy of Sciences of the Czech Republic.

出版信息

J Cogn Neurosci. 1994 Fall;6(4):332-40. doi: 10.1162/jocn.1994.6.4.332.

Abstract

Abstract The concept of a temporal integration process in the timing mechanisms in the brain, postulated on the basis of experimental observations from various paradigms (for a review see P$oUppel, 1978), has been explored in a sensorimotor synchronization task. Subjects synchronized their finger taps to sequences of auditory stimuli with interstimulus-onset intervals (ISIs) between 300 and 4800 msec in different trials. Each tonal sequence consisted of 110 stimuli; the tones had a frequency of 500 Hz and a duration of 100 msec. As observed previously, response onsets preceded onsets of the stimuli by some tens of milliseconcls for ISIs in the range from about 600 to 1800 msec. For ISIs longer than or equal to 2400 msec, the ability to time the response sequence in such a way that the response 5 were placed right ahead of the stimuli started to break clown, i.e., the task was fulfilled by reactions to the stimuli rather than by advanced responses. This observation can he understood within the general framework of a temporal integration puce 55 that is supposed to have a maximal capacity (integration interval) of approximately 3 sec. Only if successive stimuli fall within one integration period, can motor programs be initiated properly by a prior stimulus and thus lead to an appropriate synchronization between the stimulus sequence and corresponding motor acts.

摘要

摘要 在大脑的计时机制中,基于来自各种范式的实验观察提出了一个时间整合过程的概念(综述见 P$oUppel,1978),在一个感觉运动同步任务中对此进行了探讨。在不同的试验中,受试者根据听觉刺激的序列进行手指敲击,刺激之间的起始时间间隔(ISIs)在 300 到 4800 毫秒之间。每个音调序列由 110 个刺激组成;音调的频率为 500 Hz,持续时间为 100 毫秒。如前所述,对于大约 600 到 1800 毫秒的 ISIs,响应起始时间比刺激起始时间提前几十毫秒。对于大于或等于 2400 毫秒的 ISIs,以响应 5 正好在刺激之前的方式定时响应序列的能力开始下降,即任务是通过对刺激的反应而不是通过提前的反应来完成的。这一观察结果可以在一个时间整合过程的一般框架内得到理解,这个过程被假设具有大约 3 秒的最大容量(整合间隔)。只有当连续的刺激落在一个整合周期内时,才能通过先前的刺激正确地启动运动程序,从而导致刺激序列和相应的运动动作之间的适当同步。

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