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小脑输入改变对运动协调的皮层调节的影响,如脑电图电位所反映的那样。

Consequences of altered cerebellar input for the cortical regulation of motor coordination, as reflected in EEG potentials.

作者信息

Verleger R, Wascher E, Wauschkuhn B, Jaśkowski P, Allouni B, Trillenberg P, Wessel K

机构信息

Department of Neurology, Medical University of Lübeck, Germany.

出版信息

Exp Brain Res. 1999 Aug;127(4):409-22. doi: 10.1007/s002210050809.

Abstract

The cerebellum is certainly involved in fine coordination of movements, but has no efferences of its own to the muscles. Thus, it can exert its influence only via other cerebral areas that have those efferences. This study investigated in patients with cerebellar atrophy how cortical motor areas are affected by dysfunction of the cerebellum. The main question was whether the patients' slow cortical electroencephalogram (EEG) potentials during key-press preparation and execution would be generally altered or would be specifically altered when fine coordination was needed. In the coordination task, right- and left-hand keys had to be pressed simultaneously with different forces, under visual feedback. Control tasks were to press with both hands equally or with one hand only. The patients indeed had a performance deficit in the coordination task. Their cortical EEG potentials were already drastically reduced in the simple tasks, but were enhanced by the same amount as in healthy subjects when more coordination was needed. These results suggest that the cerebellum is not exclusively active in fine coordination, but is generally involved in any kind of preparatory and executive activity, whereas the motor cortex becomes more active with fine coordination. The role of the cerebellum might be to provide the motor cortex with information needed for coordinating movements. In cerebellar atrophy, this altered input may be sufficient for the motor cortex in controlling simple tasks, but not for complex ones.

摘要

小脑无疑参与了运动的精细协调,但它自身并没有通向肌肉的传出神经。因此,它只能通过其他具有这些传出神经的脑区来发挥其影响。本研究调查了小脑萎缩患者的小脑功能障碍如何影响皮质运动区。主要问题是,患者在按键准备和执行过程中缓慢的皮质脑电图(EEG)电位是会普遍改变,还是在需要精细协调时会发生特异性改变。在协调任务中,在视觉反馈下,左右手按键必须同时以不同力度按下。对照任务是双手同等力度按下或只用一只手按下。患者在协调任务中确实存在表现缺陷。他们的皮质EEG电位在简单任务中就已经大幅降低,但在需要更多协调时,其增强程度与健康受试者相同。这些结果表明,小脑并非仅在精细协调中活跃,而是普遍参与任何类型的准备和执行活动,而运动皮质在精细协调时会变得更加活跃。小脑的作用可能是为运动皮质提供协调运动所需的信息。在小脑萎缩中,这种改变的输入对于运动皮质控制简单任务可能足够,但对于复杂任务则不够。

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