首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Reaction time effects due to imperative stimulus modality are absent when a startle elicits a pre-programmed action.
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Reaction time effects due to imperative stimulus modality are absent when a startle elicits a pre-programmed action.

机译:当惊吓引起预编程的动作时,由于命令式刺激方式而引起的反应时间影响就消失了。

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摘要

When an acoustic stimulus that is sufficiently intense to elicit a startle response is delivered in conjunction with the "go" signal in a simple reaction time (RT) task, RT is greatly reduced. It has been suggested that this effect is due to the startle interacting with voluntary response channels to directly trigger the pre-programmed action. Alternatively, it may be that the startling stimulus simply increases activation along the sensory and motor pathways allowing for faster stimulus-response processing. In the present study a startling acoustic stimulus (SAS) was presented in addition to a visual or an auditory imperative stimulus (IS) in a simple RT task. Results showed that the pre-programmed response was initiated much faster when participants were startled. However, while differences in RT due to IS modality were observed in control trials, this difference was absent for startle trials. This result indicates that the SAS does not simply speed processing along the normal stimulus-response channels, but acts to release the pre-planned movement via a separate, faster neural pathway.
机译:当在简单的反应时间(RT)任务中结合“ go”信号传递足够强烈以引起惊吓反应的声音刺激时,RT会大大降低。已经提出,这种效果是由于惊吓与自愿应答通道相互作用以直接触发预编程的动作。或者,可能是惊人的刺激简单地增加了沿着感觉和运动路径的激活,从而允许更快的刺激反应处理。在本研究中,除了简单的RT任务中的视觉或听觉命令性刺激(IS)之外,还提出了令人震惊的声学刺激(SAS)。结果表明,当参与者感到震惊时,预编程的响应会更快地启动。然而,尽管在对照试验中观察到由于IS模式引起的RT差异,但对于惊吓试验却没有这种差异。这一结果表明,SAS不仅可以沿着正常的刺激反应通道加速处理,而且还可以通过单独的更快的神经路径释放预先计划的运动。

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