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丘脑在基底前脑调节初级听觉皮层神经活动中的作用。

Role of the Thalamus in Basal Forebrain Regulation of Neural Activity in the Primary Auditory Cortex.

机构信息

Department of Medicine, University of Fribourg, Fribourg CH-1700, Switzerland.

Department of Psychology, University of Fribourg, Fribourg CH-1700, Switzerland.

出版信息

Cereb Cortex. 2020 Jun 30;30(8):4481-4495. doi: 10.1093/cercor/bhaa045.

Abstract

Many studies have implicated the basal forebrain (BF) as a potent regulator of sensory encoding even at the earliest stages of or cortical processing. The source of this regulation involves the well-documented corticopetal cholinergic projections from BF to primary cortical areas. However, the BF also projects to subcortical structures, including the thalamic reticular nucleus (TRN), which has abundant reciprocal connections with sensory thalamus. Here we present naturalistic auditory stimuli to the anesthetized rat while making simultaneous single-unit recordings from the ventral medial geniculate nucleus (MGN) and primary auditory cortex (A1) during electrical stimulation of the BF. Like primary visual cortex, we find that BF stimulation increases the trial-to-trial reliability of A1 neurons, and we relate these results to change in the response properties of MGN neurons. We discuss several lines of evidence that implicate the BF to thalamus pathway in the manifestation of BF-induced changes to cortical sensory processing and support our conclusions with supplementary TRN recordings, as well as studies in awake animals showing a strong relationship between endogenous BF activity and A1 reliability. Our findings suggest that the BF subcortical projections that modulate MGN play an important role in auditory processing.

摘要

许多研究表明,基底前脑 (BF) 作为一种强有力的感觉编码调节剂,甚至在皮质处理的最早阶段也是如此。这种调节的来源涉及到有充分文献记载的 BF 到初级皮质区域的皮质投射胆碱能投射。然而,BF 也投射到皮质下结构,包括丘脑网状核 (TRN),它与感觉丘脑有丰富的相互连接。在这里,我们在麻醉大鼠中呈现自然的听觉刺激,同时在 BF 电刺激期间从腹内侧膝状体核 (MGN) 和初级听觉皮层 (A1) 进行同步单细胞记录。与初级视觉皮层一样,我们发现 BF 刺激增加了 A1 神经元的试验间可靠性,我们将这些结果与 MGN 神经元反应特性的变化联系起来。我们讨论了几条证据,表明 BF 到丘脑的通路参与了 BF 诱导的皮质感觉处理变化的表现,并通过补充的 TRN 记录以及在清醒动物中进行的研究支持了我们的结论,这些研究表明内源性 BF 活动与 A1 可靠性之间存在很强的关系。我们的发现表明,调节 MGN 的 BF 皮质下投射在听觉处理中起着重要作用。

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