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非经典短潜伏期听觉通路直接激活皮质深层。

Noncanonical Short-Latency Auditory Pathway Directly Activates Deep Cortical Layers.

作者信息

Garcia Michellee M, Kline Amber M, Onodera Koun, Tsukano Hiroaki, Dandu Pranathi R, Acosta Hailey C, Kasten Michael, Manis Paul B, Kato Hiroyuki K

机构信息

Department of Psychiatry, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.

Neuroscience Center, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.

出版信息

bioRxiv. 2025 Feb 11:2025.01.06.631598. doi: 10.1101/2025.01.06.631598.

Abstract

Auditory processing in the cerebral cortex is considered to begin with thalamocortical inputs to layer 4 (L4) of the primary auditory cortex (A1). In this canonical model, A1 L4 inputs initiate a hierarchical cascade, with higher-order cortices receiving pre-processed information for the slower integration of complex sounds. Here, we identify alternative ascending pathways in mice that bypass A1 and directly reach multiple layers of the secondary auditory cortex (A2), indicating parallel activation of these areas alongside sequential information processing. We found that L6 of both A1 and A2 receive short-latency (<10 ms) sound inputs, comparable in speed to the canonical A1 L4 input but transmitted through higher-order thalamic nuclei. Additionally, A2 L4 is innervated by a caudal subdivision within the traditionally defined primary thalamus, which we now identify as belonging to the non-primary system. Notably, both thalamic regions receive projections from distinct subdivisions of the higher-order inferior colliculus, which in turn are directly innervated by cochlear nucleus neurons. These findings reveal alternative ascending pathways reaching A2 at L4 and L6 via secondary subcortical structures. Thus, higher-order auditory cortex processes both slow, pre-processed information and rapid, direct sensory inputs, enabling parallel and distributed processing of fast sensory information across cortical areas.

摘要

大脑皮层中的听觉处理被认为始于丘脑皮质向初级听觉皮层(A1)第4层(L4)的输入。在这个经典模型中,A1 L4输入启动了一个层次级联,高阶皮层接收预处理信息,以便对复杂声音进行较慢的整合。在这里,我们在小鼠中识别出了绕过A1并直接到达次级听觉皮层(A2)多层的替代上行通路,这表明这些区域在顺序信息处理的同时会被并行激活。我们发现,A1和A2的L6都接收短潜伏期(<10毫秒)的声音输入,其速度与经典的A1 L4输入相当,但通过高阶丘脑核进行传递。此外,A2 L4由传统定义的初级丘脑内的一个尾侧亚区支配,我们现在确定该亚区属于非初级系统。值得注意的是,这两个丘脑区域都接收来自高阶下丘不同亚区的投射,而这些亚区又直接由耳蜗核神经元支配。这些发现揭示了通过次级皮层下结构在L4和L6到达A2的替代上行通路。因此,高阶听觉皮层既处理缓慢的、预处理的信息,也处理快速的、直接的感觉输入,从而能够在皮层区域对快速感觉信息进行并行和分布式处理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6e5/11828517/87328526b038/nihpp-2025.01.06.631598v2-f0001.jpg

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