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通过攀缘纤维去传入作用释放小脑抑制。

Release of cerebellar inhibition by climbing fiber deafferentation.

作者信息

Batini C, Billard J M

出版信息

Exp Brain Res. 1985;57(2):370-80. doi: 10.1007/BF00236543.

Abstract

Cerebellar units were recorded extracellularly in rats before and after an intraveinous injection of 3-acetylpyridine destroying selectively the IO. All the Purkinje cells show a loss of the complex discharge between 2 h 15 min and 2 h 45 min after treatment. This time, called the "critical period" corresponds to the degeneration of the neurons of the inferior olive as revealed by the decrease of their metabolic activity. The simple spikes of the Purkinje cells increase their discharge frequency soon after the climbing fibers cease firing. On the contrary the firing frequency of the inhibitory interneurons does not show significant changes after degeneration of the inferior olive. The efferent cerebellar neurons, including cells of the cerebellar and vestibular nuclei receiving the axon terminals of the Purkinje cells, decrease their discharge rate up to thirty times during and after the critical period. It is demonstrated that this effect is due to the increased inhibitory activity of the Purkinje cells deafferented from the climbing fibers, whereas the deafferentation of the efferent cerebellar neurones from the collaterals of the olivary cells has little impact.

摘要

在静脉注射3-乙酰吡啶选择性破坏下橄榄核之前和之后,对大鼠的小脑单位进行细胞外记录。所有浦肯野细胞在治疗后2小时15分钟至2小时45分钟之间出现复合放电丧失。这个被称为“关键期”的时间对应于下橄榄核神经元的退化,这通过其代谢活性的降低得以揭示。在攀缘纤维停止放电后不久,浦肯野细胞的简单锋电位增加其放电频率。相反,在下橄榄核退化后,抑制性中间神经元的放电频率没有显著变化。传出性小脑神经元,包括接受浦肯野细胞轴突终末的小脑核和前庭核的细胞,在关键期期间及之后其放电率降低多达三十倍。结果表明,这种效应是由于来自攀缘纤维的传入被切断的浦肯野细胞的抑制活性增加所致,而传出性小脑神经元从橄榄细胞侧支的传入被切断影响很小。

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