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在中脑注意网络的抑制性核团中,不同的神经机制构建了经典型与非经典型抑制性周围区。

Distinct neural mechanisms construct classical versus extraclassical inhibitory surrounds in an inhibitory nucleus in the midbrain attention network.

机构信息

Department of Psychological and Brain Sciences, Johns Hopkins University, Baltimore, MD, 21218, USA.

Currently, Allen Institute, Seattle, WA, USA.

出版信息

Nat Commun. 2023 Jun 9;14(1):3400. doi: 10.1038/s41467-023-39073-5.

Abstract

Inhibitory neurons in the midbrain spatial attention network, called isthmi pars magnocellularis (Imc), control stimulus selection by the sensorimotor and attentional hub, the optic tectum (OT). Here, we investigate in the barn owl how classical as well as extraclassical (global) inhibitory surrounds of Imc receptive fields (RFs), fundamental units of Imc computational function, are constructed. We find that focal, reversible blockade of GABAergic input onto Imc neurons disconnects their extraclassical inhibitory surrounds, but leaves intact their classical inhibitory surrounds. Subsequently, with paired recordings and iontophoresis, first at spatially aligned site-pairs in Imc and OT, and then, at mutually distant site-pairs within Imc, we demonstrate that classical inhibitory surrounds of Imc RFs are inherited from OT, but their extraclassical inhibitory surrounds are constructed within Imc. These results reveal key design principles of the midbrain spatial attention circuit and highlight the critical importance of competitive interactions within Imc for its operation.

摘要

中脑空间注意网络中的抑制神经元,称为巨细胞脑桥被盖(pars magnocellularis,Imc),通过感觉运动和注意中枢——视顶盖(OT)来控制刺激选择。在这里,我们研究了在仓鸮中,Imc 感受野(Imc 计算功能的基本单位)的经典和超经典(全局)抑制性环绕是如何构建的。我们发现,对 Imc 神经元 GABA 能传入的焦点、可逆阻断会使它们的超经典抑制性环绕断开,但不影响其经典抑制性环绕。随后,通过配对记录和离子电渗,首先在 Imc 和 OT 中的空间对齐的位点对,然后在 Imc 内的相互远离的位点对,我们证明了 Imc RF 的经典抑制性环绕是从 OT 继承而来的,但它们的超经典抑制性环绕是在 Imc 内部构建的。这些结果揭示了中脑空间注意回路的关键设计原则,并强调了 Imc 内部的竞争相互作用对其运作的至关重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc78/10256684/d99560c08d29/41467_2023_39073_Fig1_HTML.jpg

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