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Patterned ballistic movements triggered by a startle in healthy humans

机译:健康人类的惊吓引发的图案化弹道运动

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class="enumerated" style="list-style-type:decimal">The reaction time to a visual stimulus shortens significantly when an unexpected acoustic startle is delivered together with the ‘go’ signal in healthy human subjects. In this paper we have investigated the physiological mechanisms underlying this effect. If the commands for the startle and the voluntary reaction were superimposed at some level in the CNS, then we would expect to see alterations in the configuration of the voluntary response. Conversely, if the circuit activated by the startling stimulus is somehow involved in the execution of voluntary movements, then reaction time would be sped up but the configuration of the motor programme would be preserved.Fourteen healthy male and female volunteers were instructed to react as fast as possible to a visual ‘go’ signal by flexing or extending their wrist, or rising onto tiptoe from a standing position. These movements generated consistent and characteristic patterns of EMG activation. In random trials, the ‘go’ signal was accompanied by a very loud acoustic stimulus. This stimulus was sufficient to produce a startle reflex when given unexpectedly on its own.The startling stimulus almost halved the latency of the voluntary response but did not change the configuration of the EMG pattern in either the arm or the leg. In some subjects the reaction times were shorter than the calculated minimum time for processing of sensory information at the cerebral cortex. Most subjects reported that the very rapid responses were produced by something other than their own will.We conclude that the very short reaction times were not produced by an early startle reflex adding on to a later voluntary response. This would have changed the form of the EMG pattern associated with the voluntary response. Instead, we suggest that such rapid reactions were triggered entirely by activity at subcortical levels, probably involving the startle circuit.The implication is that instructions for voluntary movement can in some circumstances be stored and released from subcortical structures.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 在健康的人类受试者中,当意外的声音惊吓与“开始”信号一起传递时,对视觉刺激的反应时间将大大缩短。在本文中,我们研究了这种作用的生理机制。如果在CNS中将惊吓和自愿反应的命令叠加在某个级别,那么我们期望看到自愿反应的配置发生变化。相反,如果以惊人的刺激激活的电路以某种方式参与了自愿运动的执行,则反应时间将缩短,但运动程序的配置将得到保留。 十四个健康的男性和女性指示志愿者通过弯曲或伸展手腕或从站立位置position起脚尖,对视觉的“开始”信号做出尽可能快的反应。这些运动产生了一致且特征性的肌电图激活模式。在随机试验中,“开始”信号伴随着非常响亮的声音刺激。单独给予意外刺激时,这种刺激足以产生惊吓反射。 令人震惊的刺激几乎使自愿应答的潜伏期缩短了一半,但并未改变手臂或手臂上EMG模式的配置。腿。在某些受试者中,反应时间短于计算出的处理大脑皮层感觉信息所需的最短时间。大多数受试者报告说,非常快速的反应是由他们自己的意愿产生的。 我们得出的结论是,很短的反应时间并不是由早期的惊吓反射产生的,而是后来的自愿反应产生的。这将改变与自愿响应相关的EMG模式的形式。取而代之的是,我们建议这种快速反应完全是由皮质下水平的活动触发的,可能涉及惊吓回路。 含义是,在某些情况下,可以将自愿运动的指令从皮质下结构中存储和释放。

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