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伸手过程中浦肯野细胞放电与前肢肌肉活动之间的动态对应关系。

Dynamic correspondence between Purkinje cell discharge and forelimb muscle activity during reaching.

作者信息

Holdefer Robert N, Miller Lee E

机构信息

Department of Rehabilitation Medicine, University of Washington School of Medicine, Seattle, WA 98195, USA.

出版信息

Brain Res. 2009 Oct 27;1295:67-75. doi: 10.1016/j.brainres.2009.07.085. Epub 2009 Jul 30.

Abstract

There remain conflicting models of the cerebellar control of limb movement, ranging from the suggestion that the inhibitory output from Purkinje cells (PCs) is meant to suppress unwanted muscle activity, to the hypothesis that the cerebellar cortex embodies complex internal models of limb dynamics. To test these ideas, we undertook a quantitative comparison of PC simple spike dynamics to those of muscle activity. We recorded simultaneously from Purkinje cells in the paravermal anterior lobe and from muscles of the hand and arm in the behaving monkey during a simple, sequential button pressing task. The task-related discharge of each neuron was determined from peri-event histograms aligned to the onset of the behavior. Bursts of discharge were more than twice as common as pauses, but there was no difference in their timing relative to movement. From the same recordings, the similarity between discharge and muscle activity was evaluated by calculating the cross correlation between firing rate and rectified EMG. Surprisingly, given the inhibitory projection of PCs, most of the bursts of PC discharge were positively correlated with muscle activity. Although our results do not support a simple correspondence of pauses and bursts with limb acceleration and deceleration respectively, they are consistent with a more complex PC regulation of cerebellar nuclear activity from task-related, corticopontine drive.

摘要

关于小脑对肢体运动的控制,目前存在相互矛盾的模型,从浦肯野细胞(PCs)的抑制性输出旨在抑制不必要的肌肉活动这一观点,到小脑皮层体现肢体动力学复杂内部模型的假说。为了验证这些观点,我们对PC简单峰电位动力学与肌肉活动的动力学进行了定量比较。在一只行为猴子进行简单的顺序按键任务期间,我们同时记录了其小脑蚓部前叶的浦肯野细胞以及手部和手臂肌肉的活动。每个神经元与任务相关的放电是通过与行为开始对齐的事件周围直方图来确定的。放电爆发的频率是停顿的两倍多,但它们相对于运动的时间没有差异。从相同的记录中,通过计算放电频率与整流肌电图之间的互相关来评估放电与肌肉活动之间的相似性。令人惊讶的是,考虑到PCs的抑制性投射,大多数PC放电爆发与肌肉活动呈正相关。虽然我们的结果不支持停顿和爆发分别与肢体加速和减速的简单对应关系,但它们与来自与任务相关的皮质脑桥驱动对小脑核活动进行更复杂的PC调节是一致的。

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