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首页> 外文期刊>The Journal of Comparative Neurology >The deep mesencephalic nucleus as an output center of basal ganglia: morphological and electrophysiological similarities with the substantia nigra.
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The deep mesencephalic nucleus as an output center of basal ganglia: morphological and electrophysiological similarities with the substantia nigra.

机译:中脑深核作为基底神经节的输出中心:与黑质的形态和电生理相似性。

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摘要

The deep mesencephalic nucleus (DMN) is a large midbrain reticular region between the superior colliculus, the substantia nigra compacta, the periaqueductal gray, and the medial geniculate body. Although some data suggest that it is involved in nociception and visceral control, its functions remain unclear. In the present study, by using morphological (combination of anterograde and retrograde tracers with immunocytochemistry and in situ hibrydization) and electrophysiological (firing activity and transynaptic response to striatal stimulation) methods, we show that a subpopulation of DMN cells shares many morphological and electrophysiological characteristics with those of the substantia nigra reticulata (SNR). These similarities include the following: 1) firing rate, firing pattern, and conduction velocity; 2) expression of GAD65, GAD67, and PV; 3) excitatory and inhibitory inputs from the striatum; and 4) projections to the ventral thalamus, superior colliculus, and pedunculopontine tegmental nucleus. Some differences were also found. In comparison with SN, DMN cells and striatal afferents are more sparsely distributed and they show conspicuous contralateral projections to the thalamus and superior colliculus. This suggests that, similarly to the SNR, the DMN acts as an output center of basal ganglia and probably facilitates the inter-hemispheric regulation of these centers. Copyright 2001 Wiley-Liss, Inc.
机译:中脑深核(DMN)是上丘,黑质致密部,导水管周围的灰色和内侧膝状体之间的大中脑网状区域。尽管一些数据表明它参与了伤害感受和内脏控制,但其功能尚不清楚。在本研究中,通过使用形态学方法(顺行和逆行示踪剂与免疫细胞化学和原位冬化的组合)和电生理学(激发活性和对纹状体刺激的突触反应)方法,我们显示DMN细胞的亚群具有许多形态学和电生理学特征与黑质(SNR)的那些。这些相似之处包括:1)点火速率,点火方式和传导速度; 2)GAD65,GAD67和PV的表达; 3)纹状体的兴奋性和抑制性输入;和4)投射到腹侧丘脑,上丘和足小弓骨被盖核。还发现了一些差异。与SN相比,DMN细胞和纹状体传入体分布更稀疏,并且它们对丘脑和上丘的对侧突出明显。这表明,与SNR相似,DMN充当基底神经节的输出中心,并可能促进这些中心的半球间调节。版权所有2001 Wiley-Liss,Inc.

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