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小脑-丘脑-皮质通路在熟练运动中的作用。

The role of the cerebello-thalamo-cortical pathway in skilled movement.

作者信息

Horne M K, Butler E G

机构信息

Department of Neurology, Monash Medical Centre, Clayton, Victoria, Australia.

出版信息

Prog Neurobiol. 1995 Jun;46(2-3):199-213.

PMID:7568913
Abstract

Studies of lesions of the primate cerebellum leave little doubt that the cerebellum is necessary for the execution of smooth and accurate movements. How the cerebellum fulfills this role at a neuronal level remains unknown. It is likely that the cerebellum exerts the same effect on a number of different efferent targets. In order to influence voluntary movement, a major output from the cerebellum projects to the motor cortex via the cerebello-thalamo-cortical (CTC) pathway. By examining neuronal activity in the cerebellar thalamus, and comparing this with activity recorded from its connections with the deep cerebellar nuclei and motor cortex, conclusions can be made regarding cerebellar function. Current data does not support a role for the CTC pathway in the initiation of movement or the control of trans-cortical reflexes. Also, the evidence does not support the hypothesis that the cerebellum prevents terminal movement oscillations by predictively sending a message to the antagonist muscle to brake the movement. The available literature supports the Eccles theory that during normal movement, the CTC pathway receives a form of efference copy from the motor cortex and compares this message with that derived from peripheral afferents about the actual progress of the movement. However, there is not a significant degree of kinematic information passing through this pathway in the course of a voluntary movement. Therefore the actual site of comparison or error-detection in this system awaits further elucidation.

摘要

对灵长类动物小脑损伤的研究毫无疑问地表明,小脑对于平稳而精确的运动执行是必要的。小脑如何在神经元水平上发挥这一作用仍然未知。小脑可能对许多不同的传出靶点产生相同的影响。为了影响自主运动,小脑的一个主要输出通过小脑 - 丘脑 - 皮质(CTC)通路投射到运动皮层。通过检查小脑丘脑的神经元活动,并将其与从小脑深部核团和运动皮层的连接所记录的活动进行比较,可以得出关于小脑功能的结论。目前的数据不支持CTC通路在运动发起或皮质间反射控制中起作用。此外,证据也不支持小脑通过向拮抗肌预测性地发送信息以制动运动来防止终末运动振荡的假说。现有文献支持埃克尔斯理论,即在正常运动过程中,CTC通路从运动皮层接收一种形式的传出副本,并将此信息与来自外周传入神经的关于运动实际进程的信息进行比较。然而,在自主运动过程中,通过该通路传递的运动学信息程度并不显著。因此,该系统中实际的比较或错误检测位点有待进一步阐明。

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