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自发攀爬纤维输入后浦肯野细胞简单锋电位活动的变化。

The changes in Purkinje cell simple spike activity following spontaneous climbing fiber inputs.

作者信息

McDevitt C J, Ebner T J, Bloedel J R

出版信息

Brain Res. 1982 Apr 15;237(2):484-91. doi: 10.1016/0006-8993(82)90460-7.

Abstract

The purpose of these experiments was to systematically examine the characteristics of the excitability change occurring after the inactivation period evoked by the climbing fiber input to Purkinje cells. Ninety-eight Purkinje cells were isolated extracellularly in unanesthetized decerebrate cats. Simple spikes and complex spikes were discriminated separately. Post-stimulus time histograms were constructed from 100 consecutive trials triggered by the occurrence of spontaneous complex spikes. Seventeen Purkinje cells exhibited a reduction of simple spike discharge rate following the inactivation period. However, 14 cells showed no change in simple spike activity, and in 67 cells the discharge rate increased. These changes in excitability following a spontaneous complex spike were independent of the tonic simple spike activity of the Purkinje cell. Single traces of spike train data from Purkinje cells showed that the change in discharge rate was variable, some complex spikes being followed by an increase and others by a decrease in activity. The basis for these observations and the differences between these data and those from studies in which the climbing fiber input was evoked by electrical olivary stimulation are discussed.

摘要

这些实验的目的是系统地研究浦肯野细胞接受攀缘纤维输入后在失活期诱发的兴奋性变化特征。在未麻醉的去大脑猫中,细胞外分离出98个浦肯野细胞。分别区分简单峰电位和复合峰电位。由自发复合峰电位触发的100次连续试验构建刺激后时间直方图。17个浦肯野细胞在失活期后简单峰电位发放率降低。然而,14个细胞的简单峰电位活动没有变化,67个细胞的发放率增加。自发复合峰电位后兴奋性的这些变化与浦肯野细胞的紧张性简单峰电位活动无关。浦肯野细胞峰电位序列数据的单条记录显示发放率变化是可变的,一些复合峰电位后活动增加,而另一些则减少。讨论了这些观察结果的依据以及这些数据与通过电刺激橄榄核诱发攀缘纤维输入的研究数据之间的差异。

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