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通过皮层第 5 层锥体神经元对丘脑网状核的区域选择性控制。

Region-selective control of the thalamic reticular nucleus via cortical layer 5 pyramidal cells.

机构信息

Laboratory of Thalamus Research, Institute of Experimental Medicine, Budapest, Hungary.

János Szentágothai Doctoral School of Neurosciences, Semmelweis University, Budapest, Hungary.

出版信息

Nat Neurosci. 2023 Jan;26(1):116-130. doi: 10.1038/s41593-022-01217-z. Epub 2022 Dec 22.

Abstract

Corticothalamic pathways, responsible for the top-down control of the thalamus, have a canonical organization such that every cortical region sends output from both layer 6 (L6) and layer 5 (L5) to the thalamus. Here we demonstrate a qualitative, region-specific difference in the organization of mouse corticothalamic pathways. Specifically, L5 pyramidal cells of the frontal cortex, but not other cortical regions, establish monosynaptic connections with the inhibitory thalamic reticular nucleus (TRN). The frontal L5-TRN pathway parallels the L6-TRN projection but has distinct morphological and physiological features. The exact spike output of the L5-contacted TRN cells correlated with the level of cortical synchrony. Optogenetic perturbation of the L5-TRN connection disrupted the tight link between cortical and TRN activity. L5-driven TRN cells innervated thalamic nuclei involved in the control of frontal cortex activity. Our data show that frontal cortex functions require a highly specialized cortical control over intrathalamic inhibitory processes.

摘要

皮质丘脑通路负责丘脑的自上而下的控制,其具有规范的组织方式,即每个皮质区域都从第 6 层(L6)和第 5 层(L5)向丘脑发送输出。在这里,我们证明了小鼠皮质丘脑通路在组织上存在定性的、区域特异性的差异。具体来说,额叶皮质的 L5 锥体神经元,但不是其他皮质区域,与抑制性丘脑网状核(TRN)建立单突触连接。额叶 L5-TRN 通路与 L6-TRN 投射平行,但具有不同的形态和生理特征。L5 接触的 TRN 细胞的确切尖峰输出与皮质同步性水平相关。光遗传学干扰 L5-TRN 连接会破坏皮质和 TRN 活动之间的紧密联系。L5 驱动的 TRN 细胞支配参与控制额叶皮质活动的丘脑核。我们的数据表明,额叶皮质功能需要对丘脑内抑制过程进行高度专门的皮质控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a5b/9829539/8af178a38960/41593_2022_1217_Fig1_HTML.jpg

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