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丘脑后内侧核对手体感皮层加工的调控:丘脑在皮层功能中的新作用

Control of Somatosensory Cortical Processing by Thalamic Posterior Medial Nucleus: A New Role of Thalamus in Cortical Function.

作者信息

Castejon Carlos, Barros-Zulaica Natali, Nuñez Angel

机构信息

Departamento de Anatomía, Histología y Neurociencia, Facultad de Medicina, Universidad Autónoma de Madrid, Madrid, Spain.

出版信息

PLoS One. 2016 Jan 28;11(1):e0148169. doi: 10.1371/journal.pone.0148169. eCollection 2016.

Abstract

Current knowledge of thalamocortical interaction comes mainly from studying lemniscal thalamic systems. Less is known about paralemniscal thalamic nuclei function. In the vibrissae system, the posterior medial nucleus (POm) is the corresponding paralemniscal nucleus. POm neurons project to L1 and L5A of the primary somatosensory cortex (S1) in the rat brain. It is known that L1 modifies sensory-evoked responses through control of intracortical excitability suggesting that L1 exerts an influence on whisker responses. Therefore, thalamocortical pathways targeting L1 could modulate cortical firing. Here, using a combination of electrophysiology and pharmacology in vivo, we have sought to determine how POm influences cortical processing. In our experiments, single unit recordings performed in urethane-anesthetized rats showed that POm imposes precise control on the magnitude and duration of supra- and infragranular barrel cortex whisker responses. Our findings demonstrated that L1 inputs from POm imposed a time and intensity dependent regulation on cortical sensory processing. Moreover, we found that blocking L1 GABAergic inhibition or blocking P/Q-type Ca2+ channels in L1 prevents POm adjustment of whisker responses in the barrel cortex. Additionally, we found that POm was also controlling the sensory processing in S2 and this regulation was modulated by corticofugal activity from L5 in S1. Taken together, our data demonstrate the determinant role exerted by the POm in the adjustment of somatosensory cortical processing and in the regulation of cortical processing between S1 and S2. We propose that this adjustment could be a thalamocortical gain regulation mechanism also present in the processing of information between cortical areas.

摘要

目前对丘脑皮质相互作用的了解主要来自对lemniscal丘脑系统的研究。对旁lemniscal丘脑核功能的了解较少。在触须系统中,后内侧核(POm)是相应的旁lemniscal核。POm神经元投射到大鼠脑内初级体感皮层(S1)的第1层(L1)和第5A层。已知L1通过控制皮层内兴奋性来改变感觉诱发反应,这表明L1对触须反应有影响。因此,靶向L1的丘脑皮质通路可能会调节皮层放电。在这里,我们结合体内电生理学和药理学方法,试图确定POm如何影响皮层加工。在我们的实验中,对乌拉坦麻醉的大鼠进行的单单位记录显示,POm对颗粒上和颗粒下桶状皮层触须反应的幅度和持续时间施加了精确控制。我们的研究结果表明,来自POm的L1输入对皮层感觉加工施加了时间和强度依赖性调节。此外,我们发现阻断L1中的GABA能抑制或阻断L1中的P/Q型Ca2+通道可阻止POm对桶状皮层触须反应的调节。此外,我们发现POm也在控制S2中的感觉加工,并且这种调节受到来自S1中L5的皮质离心活动的调节。综上所述,我们的数据证明了POm在调节体感皮层加工以及在调节S1和S2之间的皮层加工中所起的决定性作用。我们提出,这种调节可能是一种丘脑皮质增益调节机制,也存在于皮层区域之间的信息处理中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1a9/4731153/d0b8dadae531/pone.0148169.g001.jpg

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