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一个用于声音处理的并行音调拓扑排列的丘脑皮质回路。

A parallel tonotopically arranged thalamocortical circuit for sound processing.

作者信息

Zhao Zhikai, Tang Xiaojing, Chen Yiheng, Tao Jie, Polat Mahiber, Yang Zhiqi, Yang Linhan, Wang Meng, Liang Shanshan, Zhang Kuan, Zhang Yun, Zhang Chunqing, Wang Lina, Wang Yanjiang, Konnerth Arthur, Jia Hongbo, Xiong Wei, Liao Xiang, Li Sunny C, Chen Xiaowei

机构信息

Center for Neurointelligence, School of Medicine, Chongqing University, Chongqing 400044, China; Brain Research Center and State Key Laboratory of Trauma and Chemical Poisoning, Third Military Medical University, Chongqing 400038, China.

Center for Neurointelligence, School of Medicine, Chongqing University, Chongqing 400044, China; LFC Laboratory and Chongqing Institute for Brain and Intelligence, Guangyang Bay Laboratory, Chongqing 400064, China.

出版信息

Neuron. 2025 Jun 18;113(12):1998-2013.e6. doi: 10.1016/j.neuron.2025.03.022. Epub 2025 Apr 15.

Abstract

The perception of the sensory world in mammals requires information flow from the thalamus to the cortex. Although the first-order sensory thalamus and its surrounding nuclei are considered the major hub for feedforward thalamocortical transmission, it remains unknown whether any other thalamic input could also contribute to this transmission. We found a thalamic region, the basal region of the ventromedial nucleus of the thalamus (bVM), that sends dense, tonotopically arranged projections to auditory cortex (AuC) fields. Silencing these AuC-projecting neurons severely impaired the mouse's ability to discriminate sound frequencies. These projections exhibited strong frequency-tuning preferences that matched the cortical tonotopic map. Moreover, bVM inputs were excitatory and primarily terminated on neuron-derived neurotrophic factor-positive interneurons in cortical layer 1. Silencing these inputs significantly reduced sound-evoked responses of AuC neurons. Our results reveal a non-canonical, tonotopically arranged thalamic input to cortical layer 1 that contributes to sound processing, in parallel to the classic auditory thalamocortical pathway.

摘要

哺乳动物对感觉世界的感知需要信息从丘脑流向皮层。尽管一级感觉丘脑及其周围核团被认为是丘脑皮质前馈传递的主要枢纽,但尚不清楚是否有其他丘脑输入也能促进这种传递。我们发现了一个丘脑区域,即丘脑腹内侧核的基底区域(bVM),它向听觉皮层(AuC)区域发送密集的、按音调排列的投射。沉默这些向AuC投射的神经元会严重损害小鼠辨别声音频率的能力。这些投射表现出强烈的频率调谐偏好,与皮层音调图谱相匹配。此外,bVM输入是兴奋性的,主要终止于皮层第1层中神经元源性神经营养因子阳性的中间神经元上。沉默这些输入会显著降低AuC神经元的声音诱发反应。我们的结果揭示了一条非经典的、按音调排列的丘脑输入到皮层第1层的通路,它与经典的听觉丘脑皮质通路并行,对声音处理有贡献。

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