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基底神经节与运动皮层第 5 层和小脑在小鼠运动丘脑的输入会聚。

Convergence of inputs from the basal ganglia with layer 5 of motor cortex and cerebellum in mouse motor thalamus.

机构信息

Department of Neurobiology, University of Chicago, Chicago, United States.

出版信息

Elife. 2024 Jun 10;13:e97489. doi: 10.7554/eLife.97489.

Abstract

A key to motor control is the motor thalamus, where several inputs converge. One excitatory input originates from layer 5 of primary motor cortex (M1), while another arises from the deep cerebellar nuclei (Cb). M1 terminals distribute throughout the motor thalamus and overlap with GABAergic inputs from the basal ganglia output nuclei, the internal segment of the globus pallidus (GPi), and substantia nigra pars reticulata (SNr). In contrast, it is thought that Cb and basal ganglia inputs are segregated. Therefore, we hypothesized that one potential function of the GABAergic inputs from basal ganglia is to selectively inhibit, or gate, excitatory signals from M1 in the motor thalamus. Here, we tested this possibility and determined the circuit organization of mouse (both sexes) motor thalamus using an optogenetic strategy in acute slices. First, we demonstrated the presence of a feedforward transthalamic pathway from M1 through motor thalamus. Importantly, we discovered that GABAergic inputs from the GPi and SNr converge onto single motor thalamic cells with excitatory synapses from M1. Separately, we also demonstrate that, perhaps unexpectedly, GABAergic GPi and SNr inputs converge with those from the Cb. We interpret these results to indicate that a role of the basal ganglia is to gate the thalamic transmission of M1 and Cb information to cortex.

摘要

运动控制的关键在于运动丘脑,这里汇聚了多个输入。一个兴奋性输入来自初级运动皮层(M1)的第 5 层,另一个则来自小脑深部核团(Cb)。M1 末端分布于整个运动丘脑,并与来自基底节输出核、苍白球内节(GPi)和黑质网状部(SNr)的 GABA 能输入重叠。相比之下,人们认为 Cb 和基底节的输入是分开的。因此,我们假设基底节 GABA 能输入的一个潜在功能是选择性地抑制或门控运动丘脑来自 M1 的兴奋性信号。在这里,我们使用急性切片中的光遗传学策略检验了这一可能性,并确定了小鼠(雌雄同体)运动丘脑的回路组织。首先,我们证明了 M1 通过运动丘脑的前馈丘脑通路的存在。重要的是,我们发现来自 GPi 和 SNr 的 GABA 能输入与来自 M1 的兴奋性突触汇聚到单个运动丘脑细胞上。此外,我们还证明,出人意料的是,GABA 能 GPi 和 SNr 输入与 Cb 的输入汇聚。我们解释这些结果表明,基底节的作用是门控 M1 和 Cb 信息向皮层的丘脑传递。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70d1/11208046/d96715c2f88e/elife-97489-fig1.jpg

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