Substantia nigra control of basal ganglia nuclei.

Ezia Guatteo, Maria Letizia Cucchiaroni, Nicola B Mercuri
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引用次数: 22

Abstract

The substantia nigra, located in the ventral mesencephalon, is one of the five nuclei that constitute the basal ganglia circuit, which controls voluntary movements. It is divided into the pars compacta and the pars reticulata, which mainly contain dopaminergic and GABAergic cells respectively. Here we overview the electrophysiological properties of these substantia nigra neurons in the pars compacta and reticulata, together with their synaptic connections, and discuss the functional effects of dopaminergic and GABAergic inputs within the basal ganglia. We also examine the phenomenon that when a deficiency of dopamine (DA) occurs (e.g. in Parkinson's disease), there is an aberrant synaptic plasticity in the basal ganglia. Moreover, we point out that the appearance of an altered pattern of neuronal firing (beta-oscillations) and synchrony among neurons in the subthalamic nucleus, the internal globus pallidus, and the substantia nigra pars reticulata has been related to motor symptoms and possibly, persistent degeneration of DA-containing neurons. Finally, we believe that, based on pathophysiological data, new and significant targets for therapeutic intervention can be identified and tested.

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基底神经节核的黑质控制。
黑质位于中脑腹侧,是构成基底神经节回路的五个核之一,控制随意运动。它分为致密部和网状部,主要含有多巴胺能细胞和gaba能细胞。本文综述了致密部和网状部黑质神经元的电生理特性及其突触连接,并讨论了基底神经节内多巴胺能和gaba能输入的功能影响。我们还研究了当多巴胺(DA)缺乏时(例如帕金森病),基底神经节中存在异常的突触可塑性的现象。此外,我们指出,丘脑下核、内部苍白球和网状黑质神经元之间神经元放电模式(β振荡)和同步性改变的出现与运动症状和可能的含da神经元的持续变性有关。最后,我们相信,基于病理生理数据,可以确定和测试新的和重要的治疗干预目标。
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