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首页> 外文期刊>The European Journal of Neuroscience >Influence of the predicted time of stimuli eliciting movements on responses of tonically active neurons in the monkey striatum.
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Influence of the predicted time of stimuli eliciting movements on responses of tonically active neurons in the monkey striatum.

机译:刺激诱发运动的预测时间对猴纹状体中声活动神经元反应的影响。

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Changes in activity of tonically active neurons of the primate striatum are determined both by the behavioural significance of stimuli and the context in which stimuli are presented. We investigated how the responses of these neurons are modified by the temporal predictability of stimuli eliciting learned behavioural reactions. Single neurons were recorded from the caudate nucleus and putamen of two macaque monkeys performing a visual reaction time task under conditions in which the timing of the trigger stimulus was made more or less predictable. The monkeys' ability to predict the trigger onset was assessed by measuring arm movement reaction times and saccadic ocular reactions. Of 171 neurons responding to the unsignalled presentation of the trigger stimulus, 32% lost their response when an instruction cue preceded the trigger by a highly practised 1.5 s interval, and the response reappeared when this interval was varied randomly from 1 to 2.5 s or prolonged to 3 or 4. 5 s. Although 43% of the neurons remained responsive irrespective of task condition, the responses were stronger with longer intervals than with the accustomed 1.5 s interval. In addition, a number of neurons responding to the instruction lost their response when the trigger appeared more distant from the instruction. These findings demonstrate that neuronal responses to a movement-triggering signal become more numerous and pronounced when the degree of temporal predictability of that signal was decreased. We conclude that tonic striatal neurons are sensitive to temporal aspects of stimulus prediction.
机译:灵长类纹状体的色调活跃神经元活动的变化取决于刺激的行为重要性和呈现刺激的环境。我们调查了这些神经元的反应是如何通过引起学习行为反应的刺激的时间可预测性而改变的。在使触发刺激的时间或多或少可预测的条件下,从执行视觉反应时间任务的两只猕猴的尾状核和壳状核中记录单个神经元。通过测量手臂运动反应时间和眼跳反应来评估猴子预测触发事件的能力。在171个对触发刺激的无信号表现做出响应的神经元中,有32%在指令提示在触发之前经过高度练习的1.5 s间隔时失去了响应,而当该间隔从1到2.5 s随机变化或延长时,响应又出现了至3或4。5 s。尽管43%的神经元无论任务状况如何均保持响应,但间隔更长的响应比常规的1.5 s间隔更强。另外,当触发器看起来离指令更远时,许多对指令作出响应的神经元失去了响应。这些发现表明,当该信号的时间可预测性降低时,对触发运动的信号的神经元响应变得越来越多且明显。我们得出结论,强直纹状体神经元对刺激预测的时间方面敏感。

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