Behavioral detection of subcortical stimuli: comparison of somatosensory and "motor" circuits.

C M Bourassa, J E Swett
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引用次数: 1

Abstract

Cats were trained to press a lever for food reinforcement in response to stimulation of the ventral lateral (VL) nucleus of the thalamus and the deep cerebellar nuclei. By scaling stimulus intensities relative to the appearance of a minimal amplitude evoked response in pericruciate cortex, it was possible to measure behavioral detection thresholds and correlate behavior with electrocortical activity. With stimulus rates of 25 Hz or greater, VL was the least effective stimulus site for producing detection. At stimulus rates less than 25 Hz, stimulation of the lateral or interpositus nuclei was even less effective in eliciting behavior, but at rates of 25 Hz or more, detection thresholds decreased below those for VL stimulation; cerebellar stimulation produced detection as readily as had stimulation of the ventrobasal complex in other experiments. These findings suggest that the cerebellum may modulate sensory experiences and that some portions of cerebral cortex, the pericruciate and suprasylvian regions, do not appear to be directly involved in mediating sensory detection. It is postulated that the neural detection circuits are more likely to be found in subcortical than in cerebrocortical structures.

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皮层下刺激的行为检测:体感觉和“运动”回路的比较。
猫被训练按下食物强化的杠杆,以响应丘脑腹侧核和小脑深部核的刺激。通过测量刺激强度与交叉皮层最小振幅诱发反应的表现,可以测量行为检测阈值,并将行为与皮层电活动联系起来。当刺激率为25 Hz或更高时,VL是产生检测的最不有效的刺激部位。在低于25赫兹的刺激率下,刺激外侧核或间位核在激发行为方面的效果更差,但在25赫兹或更高的刺激率下,检测阈值低于VL刺激;在其他实验中,小脑刺激和腹底复合体刺激一样容易产生检测。这些发现表明,小脑可能调节感觉体验,而大脑皮层的某些部分,如表皮和上庇护区,似乎并不直接参与调节感觉检测。假设神经检测回路在皮层下比在脑皮层结构中更容易被发现。
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