首页> 外文期刊>The Journal of Comparative Neurology >Spatial distribution of thalamic projections to the supplementary motor area and the primary motor cortex: a retrograde multiple labeling study in the macaque monkey.
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Spatial distribution of thalamic projections to the supplementary motor area and the primary motor cortex: a retrograde multiple labeling study in the macaque monkey.

机译:丘脑向辅助运动区和初级运动皮层的空间分布:猕猴的逆行多重标记研究。

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摘要

The exact knowledge on spatial organization of information sources from the thalamus to the supplementary motor area (SMA) and to the primary motor cortex (MI) has not been established. We investigated the distribution of thalamocortical neurons projecting to forelimb representations of the SMA and the MI using a multiple retrograde labeling technique in the monkey. The forelimb area of the SMA, and the distal and proximal forelimb areas of the MI were identified by electrophysiological techniques of intracortical microstimulation and single neuron recording. Injections were made into these three representations with three different dyes in the same animal (horseradish peroxidase conjugated to wheat germ agglutinin, diamidino yellow, and fast blue), and the thalamic neurons were retrogradely labeled. Injections into the SMA densely labeled thalamic neurons in nuclei ventralis lateralis pars oralis (VLo), ventralis lateralis pars medialis (VLm) and ventralis lateralis pars caudalis (VLc), but not in nucleus ventralis posterior lateralis pars oralis (VPLo). Injections into the MI labeled thalamic neurons primarily in VLo, VLc, and VPLo. We found that the distribution of projection neurons to the three areas was largely separate in the thalamus. However, in the middle part of VLo, and in a limited portion of VLc, thalamic neurons projecting to the SMA partially overlapped with those to the distal forelimb area of the MI. They overlapped little with those to the proximal forelimb area of the MI. We noted no overlap between the distributions of thalamic projection neurons to the distal and proximal forelimb areas of the MI. These findings suggest that the SMA and MI receive separate information from the thalamus, while sharing minor sources of common inputs.
机译:从丘脑到补充运动区(SMA)以及主要运动皮层(MI)的信息源的空间组织的确切知识尚未建立。我们研究了在猴中使用多重逆行标记技术的丘脑皮层神经元的分布,这些分布投射到SMA和MI的前肢表现。 SMA的前肢区域以及MI的远端和近端前肢区域通过皮层内微刺激和单神经元记录的电生理技术进行鉴定。在同一只动物中将三种不同的染料注射入这三种表示形式(辣根过氧化物酶与小麦胚芽凝集素,二mid黄和坚牢蓝共轭),丘脑神经元被逆行标记。注射入SMA密集标记的丘脑神经外侧丘脑神经元(VLo),腹侧腹内侧肌(VLm)和腹侧腹肌尾状肌(VLc),但不注射至腹侧腹外侧后丘脑核(VPLo)。注射入MI标记的丘脑神经元主要是在VLo,VLc和VPLo中。我们发现,丘脑中投射神经元到这三个区域的分布在很大程度上是分开的。但是,在VLo的中间部分和VLc的有限部分中,投射到SMA的丘脑神经元与MI的远端前肢区域的那些重叠。它们与MI近端前肢区域的重叠很少。我们注意到丘脑投射神经元到MI的远端和近前肢区域的分布之间没有重叠。这些发现表明,SMA和MI从丘脑中获得单独的信息,同时共享少量的共同输入。

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