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帕金森震颤的病理生理学:综述

The pathophysiology of parkinsonian tremor: a review.

作者信息

Deuschl G, Raethjen J, Baron R, Lindemann M, Wilms H, Krack P

机构信息

Department of Neurology, Christian-Albrechts-Universität Kiel.

出版信息

J Neurol. 2000 Sep;247 Suppl 5:V33-48. doi: 10.1007/pl00007781.

Abstract

Parkinsonian tremor is most likely due to oscillating neuronal activity within the CNS. Summarizing all the available evidence, peripheral factors only play a minor role in the generation, maintenance and modulation of PD tremor. Recent studies have shown that not a single but multiple oscillators are responsible. The most likely candidate producing these oscillations is the basal ganglia loop and its topographic organization might be responsible for the separation into different oscillators which, nevertheless, usually produce the same frequency. The neuronal mechanisms underlying these oscillations are not yet clear, but three hypotheses would be compatible with the presently available data from animal models and data recorded in patients. The first is a cortico-subthalamo-pallido-thalamic loop, the second is a pacemaker consisting of the external pallidum and the subthalamic nucleus, and the third is abnormal synchronization due to unknown mechanisms within the whole striato-pallido-thalamic pathway leading to a loss of segregation. Assuming the oscillator within the basal ganglia pathway, the mechanism of stereotactic surgery might be a desynchronization of the activity of the basal ganglia-thalamo-cortical or the cerebello-thalamo-cortical pathway.

摘要

帕金森震颤很可能是由于中枢神经系统内神经元活动的振荡所致。总结所有现有证据,外周因素在帕金森病震颤的产生、维持和调节中仅起次要作用。最近的研究表明,并非单一振荡器而是多个振荡器起作用。产生这些振荡的最可能候选者是基底神经节环路,其拓扑结构可能导致分离成不同的振荡器,不过这些振荡器通常产生相同的频率。这些振荡背后的神经元机制尚不清楚,但有三种假说与目前来自动物模型和患者记录的数据相符。第一种是皮质 - 丘脑底核 - 苍白球 - 丘脑环路,第二种是由外侧苍白球和丘脑底核组成的起搏器,第三种是由于整个纹状体 - 苍白球 - 丘脑通路内未知机制导致的异常同步,进而导致分离丧失。假设基底神经节通路内存在振荡器,立体定向手术的机制可能是基底神经节 - 丘脑 - 皮质或小脑 - 丘脑 - 皮质通路活动的去同步化。

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