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Climbing Fiber Regulation of Spontaneous Purkinje Cell Activity and Cerebellum-Dependent Blink Responses

机译:自发浦肯野细胞活动和小脑依赖性眨眼反应的攀登纤维调节。

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摘要

It has been known for a long time that GABAergic Purkinje cells in the cerebellar cortex, as well as their target neurons in the cerebellar nuclei, are spontaneously active. The cerebellar output will, therefore, depend on how input is integrated into this spontaneous activity. It has been shown that input from climbing fibers originating in the inferior olive controls the spontaneous activity in Purkinje cells. While blocking climbing fiber input to the Purkinje cells causes a dramatic increase in the firing rate, increased climbing fiber activity results in reduced Purkinje cell activity. However, the exact calibration of this regulation has not been examined systematically. Here we examine the relation between climbing fiber stimulation frequency and Purkinje cell activity in unanesthetized decerebrated ferrets. The results revealed a gradual suppression of Purkinje cell activity, starting at climbing fiber stimulation frequencies as low as 0.5 Hz. At 4 Hz, Purkinje cells were completely silenced. This effect lasted an average of 2 min after the stimulation rate was reduced to a lower level. We also examined the effect of sustained climbing fiber stimulation on overt behavior. Specifically, we analyzed conditioned blink responses, which are known to be dependent on the cerebellum, while stimulating the climbing fibers at different frequencies. In accordance with the neurophysiological data, the conditioned blink responses were suppressed at stimulation frequencies of ≥4 Hz.
机译:长期以来已知小脑皮层中的GABA能浦肯野细胞及其在小脑核中的靶神经元是自发活跃的。因此,小脑输出将取决于如何将输入整合到这种自发活动中。已经显示,来自下橄榄的攀缘纤维的输入控制了浦肯野细胞的自发活性。尽管阻止攀岩纤维输入浦肯野细胞会导致射击速率的急剧增加,但攀岩纤维活性的增加会导致浦肯野细胞活性的降低。但是,尚未对该系统的准确校准进行系统的检查。在这里,我们检查了在未麻醉的去脑雪貂中攀爬纤维刺激频率与浦肯野细胞活性之间的关系。结果显示,从低至0.5 Hz的攀爬纤维刺激频率开始,浦肯野细胞活性逐渐受到抑制。在4 Hz时,浦肯野细胞完全沉默。在刺激率降低到较低水平后,这种效果平均持续2分钟。我们还检查了持续攀爬纤维刺激对明显行为的影响。具体来说,我们分析了条件眨眼响应,该响应取决于小脑,同时以不同的频率刺激攀爬纤维。根据神经生理学数据,在≥4Hz的刺激频率下,条件眨眼反应受到抑制。

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