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去大脑行走猫中,与攀缘纤维输入到浦肯野细胞相关的简单锋电位活动和运动行为的改变。

Alterations in simple spike activity and locomotor behavior associated with climbing fiber input to Purkinje cells in a decerebrate walking cat.

作者信息

Kim J H, Wang J J, Ebner T J

机构信息

Department of Neurosurgery, University of Minnesota, Minneapolis 55455.

出版信息

Neuroscience. 1988 May;25(2):475-89. doi: 10.1016/0306-4522(88)90252-7.

Abstract

Recently we reported significant modulation of climbing fiber discharge in cerebellar Purkinje cells during normal and perturbed locomotion in the decerebrate cat walking on a treadmill. In this study covariation of simple spike activity and step cycle behavior with complex spike discharge were studied in decerebrate cats. Purkinje cell simple and complex spike discharge was recorded extracellularly in the intermediate region of lobules IV and V. Forelimb triceps and biceps electromyographic activity and displacement were monitored during the step cycle. A series of analyses were carried out to determine the temporal relationship between the complex spike discharge and forelimb step cycle, electromyographic activity and simple spike discharge. In this paper only the complex spike discharge associated with the onset of locomotion was evaluated. Using a sorting technique the amplitude of the forelimb step cycle and the associated triceps and biceps electromyographic activity covaried with complex spike discharge. For the majority of cells the alterations in the step cycle followed or occurred with the increase in complex spike discharge. However, in some cells the step cycle modifications preceded the increase in climbing fiber afferent activity. Another series of analyses employing an alignment technique demonstrated that a short term increase in simple spike discharge followed and was tightly coupled to the complex spike discharge. Additionally in most Purkinje cells an "oscillation" of simple spike activity which followed the complex spike discharge was uncovered. These observations support an important role for the climbing fiber afferent system in ongoing motor behavior. The results are consistent with the speculation that increased climbing fiber afferent input alters cerebellar cortical output which in turn can alter the ongoing motor behavior.

摘要

最近,我们报道了在跑步机上行走的去大脑猫正常和受干扰运动期间,小脑浦肯野细胞中攀缘纤维放电的显著调制。在这项研究中,研究了去大脑猫简单峰电位活动和步周期行为与复合峰电位放电的协变关系。在小叶IV和V的中间区域细胞外记录浦肯野细胞的简单和复合峰电位放电。在步周期中监测前肢三头肌和二头肌的肌电图活动和位移。进行了一系列分析以确定复合峰电位放电与前肢步周期、肌电图活动和简单峰电位放电之间的时间关系。本文仅评估与运动开始相关的复合峰电位放电。使用一种分类技术,前肢步周期的幅度以及相关的三头肌和二头肌肌电图活动与复合峰电位放电协变。对于大多数细胞,步周期的改变跟随复合峰电位放电的增加或与之同时发生。然而,在一些细胞中,步周期的改变先于攀缘纤维传入活动的增加。另一系列采用对齐技术的分析表明,简单峰电位放电的短期增加跟随复合峰电位放电并与之紧密耦合。此外,在大多数浦肯野细胞中发现了跟随复合峰电位放电的简单峰电位活动的“振荡”。这些观察结果支持攀缘纤维传入系统在持续运动行为中的重要作用。结果与以下推测一致,即增加的攀缘纤维传入输入会改变小脑皮质输出,进而改变正在进行的运动行为。

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