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非初级运动皮层对初级运动皮层锥体束和非锥体束神经元的输入组织:猕猴的电生理研究

Organization of nonprimary motor cortical inputs on pyramidal and nonpyramidal tract neurons of primary motor cortex: An electrophysiological study in the macaque monkey.

作者信息

Tokuno H, Nambu A

机构信息

Department of Cell Biology and Department of Neurobiology, Tokyo Metropolitan Institute for Neuroscience, Fuchu, Tokyo 183-8526, Japan.

出版信息

Cereb Cortex. 2000 Jan;10(1):58-68. doi: 10.1093/cercor/10.1.58.

Abstract

To elucidate the functions of nonprimary motor cortical (nPMC) areas whose afferents synapse onto output neurons of the primary motor cortex (PMC), we examined the responses of pyramidal tract neurons (PTNs) and non-PTNs (nPTNs) to electrical stimulation in the three nPMCs, the supplementary motor area (SMA) and the dorsal and ventral divisions of the premotor cortex (PMd and PMv), with extracellular unit recording in alert monkeys. Typical responses of PTNs to nPMC stimulation were early orthodromic excitatory responses followed by inhibitory responses. Among 27 PTNs tested by constructing peri-stimulus time histograms, 19 (70.4%) showed inhibitory responses to stimulation in all of the nPMC areas. In contrast, 5/33 PTNs (15.2%) and 10/72 nPTNs (13.9%) showed excitatory responses to stimulation in all of the nPMCs. The inhibitory responses of PTNs were mediated by inhibitory interneurons, some of which may correspond to nPTNs in the superficial layers of the PMC. These interneurons probably possess widely extended axons and nonspecifically inhibit multiple PTNs in layer V. The excitatory and inhibitory influences, and the patterns of convergence of inputs from the nPMCs onto the PTNs, are important to understand motor control by the nPMC-PMC-spinal cord pathway.

摘要

为了阐明非初级运动皮层(nPMC)区域的功能,其传入神经与初级运动皮层(PMC)的输出神经元形成突触,我们在清醒猴子身上通过细胞外单位记录,研究了锥体束神经元(PTN)和非锥体束神经元(nPTN)对三个nPMC区域、辅助运动区(SMA)以及运动前皮层的背侧和腹侧部分(PMd和PMv)电刺激的反应。PTN对nPMC刺激的典型反应是早期的顺向兴奋性反应,随后是抑制性反应。在通过构建刺激周围时间直方图测试的27个PTN中,19个(70.4%)在所有nPMC区域对刺激均表现出抑制性反应。相比之下,5/33个PTN(15.2%)和10/72个nPTN(13.9%)在所有nPMC区域对刺激均表现出兴奋性反应。PTN的抑制性反应由抑制性中间神经元介导,其中一些可能对应于PMC浅层的nPTN。这些中间神经元可能具有广泛延伸的轴突,并非特异性地抑制V层中的多个PTN。nPMC对PTN的兴奋性和抑制性影响以及输入汇聚模式,对于理解nPMC-PMC-脊髓通路的运动控制至关重要。

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