首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The influence of somatosensory cortex on climbing fiber responses in the lateral hemispheres of the rat cerebellum after peripheral tactile stimulation.
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The influence of somatosensory cortex on climbing fiber responses in the lateral hemispheres of the rat cerebellum after peripheral tactile stimulation.

机译:周围触觉刺激后,体感皮层对大鼠小脑外侧半球攀爬纤维反应的影响。

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摘要

This report describes the temporal relationship between the latency of responses to peripheral stimulation in primary somatosensory (SI) cerebral cortex and the timing of climbing fiber inputs to the lateral hemispheres of the rat cerebellum. Examined in the tactilely responsive regions of crus IIa in the rat, the results show that SI influences the timing of both evoked and spontaneous climbing fiber activity in these cerebellar regions without affecting the rate or probability of complex spike discharge. By reversibly blocking SI activity, we demonstrate that the absence of cortical input results in a lengthening of climbing fiber response latency to peripheral stimuli. Similarly, enhancing the cortical input by subthreshold electrical stimulation of SI results in a shortening of climbing fiber response latency. These results provide a new explanation for the tendency of the inferior olive to oscillate at 7-12 Hz and is consistent with the hypothesis that the inferior olive provides the cerebellum information about the timing of cortical computational cycles. Results are discussed in the context of previous and current hypotheses concerning the physiology and function of the inferior olive/climbing fiber system and are interpreted to provide additional evidence of a role for the cerebellum in the tactile somatosensory system.
机译:该报告描述了初级体感(SI)大脑皮层中对周围刺激的反应潜伏期与大鼠小脑外侧半球的纤维输入爬升时间之间的时间关系。在大鼠中IIa的触觉反应区域中进行了检查,结果表明,SI影响这些小脑区域诱发的和自发性攀爬纤维活动的时间,而不影响复杂的尖峰放电的速率或可能性。通过可逆地阻止SI的活动,我们证明,缺乏皮质输入会导致攀岩纤维对周围刺激的反应潜伏期延长。同样,通过亚阈值电刺激SI增强皮质输入可缩短攀爬纤维反应潜伏期。这些结果为下橄榄在7-12 Hz处振荡的趋势提供了新的解释,并且与下橄榄提供有关皮层计算周期时间的小脑信息的假设相一致。结果在先前和当前关于下橄榄/攀爬纤维系统的生理和功能的假设的背景下进行了讨论,并被解释为小脑在触觉体感系统中的作用提供了其他证据。

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