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首页> 外文期刊>Journal of Neurophysiology >Altered triggering of a prepared movement by a startling stimulus.
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Altered triggering of a prepared movement by a startling stimulus.

机译:惊人的刺激改变了预备动作的触发。

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An experiment is reported that investigated the effects of an auditory startling stimulus on a compound movement task. Previous findings have shown that, in a targeting task, a secondary movement can be initiated based on the proprioceptive information provided by a primary movement. Studies involving the presentation of a startling stimulus have shown that in reaction time (RT) tasks, prepared ballistic movements could be released early when participants are startled. In the present study we sought to determine whether the secondary component in an ongoing movement task, once prepared, could also be triggered by a startling stimulus. Participants performed a slow active elbow extension (22 degrees /s), opening their hand when the arm passed 55 degrees of extension from the starting point. An unexpected 124 dB startle stimulus was presented 5, 25, or 45 degrees into the movement. Findings showed that, when participants were startled, the secondary component was triggered despite incongruent kinestheticinformation. However, this only occurred when the startle was presented late in the primary movement. This suggests that the secondary movement was not prepared prior to task initiation, but was "loaded" into lower brain structures at some point during the movement in preparation to be triggered by the CNS. This occurred late in the movement sequence, but >/=400 ms prior to reaching the target. These findings indicate that, in addition to ballistic RT tasks, a startle can be used to probe response preparation in ongoing compound movement tasks.
机译:据报道,有一项实验研究了听觉惊吓刺激对复合运动任务的影响。先前的发现表明,在目标任务中,可以基于一次运动提供的本体感受信息来启动二次运动。涉及令人震惊的刺激的研究表明,在反应时间(RT)任务中,当参与者感到震惊时,准备好的弹道运动可能会提前释放。在本研究中,我们试图确定正在进行的运动任务中的次要组件,一旦准备好,是否也可以由令人震惊的刺激来触发。参与者进行了缓慢的主动肘伸展运动(22度/秒),当手臂从起点经过55度伸展时张开了手。机芯以5、25或45度出现了意外的124 dB惊吓刺激。研究结果表明,当参与者感到震惊时,尽管动觉信息不一致,但次要成分仍被触发。但是,这仅在初级运动中出现惊吓时才发生。这表明次要运动不是在任务启动之前准备的,而是在运动过程中的某个时刻“加载”到较低的大脑结构中,以准备由中枢神经系统触发。这发生在运动序列的后期,但在到达目标之前> / = 400 ms。这些发现表明,除了弹道RT任务外,还可以使用惊吓来探测正在进行的复合移动任务中的反应准备情况。

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