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Connectional Modularity of Top-Down and Bottom-Up Multimodal Inputs to the Lateral Cortex of the Mouse Inferior Colliculus

机译:自上而下和自下而上的多模式输入到小鼠下丘脑外侧皮质的连接模块化。

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摘要

The lateral cortex of the inferior colliculus receives information from both auditory and somatosensory structures and is thought to play a role in multisensory integration. Previous studies in the rat have shown that this nucleus contains a series of distinct anatomical modules that stain for GAD-67 as well as other neurochemical markers. In the present study, we sought to better characterize these modules in the mouse inferior colliculus and determine whether the connectivity of other neural structures with the lateral cortex is spatially related to the distribution of these neurochemical modules. Staining for GAD-67 and other markers revealed a single modular network throughout the rostrocaudal extent of the mouse lateral cortex. Somatosensory inputs from the somatosensory cortex and dorsal column nuclei were found to terminate almost exclusively within these modular zones. However, projections from the auditory cortex and central nucleus of the inferior colliculus formed patches that interdigitate with the GAD-67-positive modules. These results suggest that the lateral cortex of the mouse inferior colliculus exhibits connectional as well as neurochemical modularity and may contain multiple segregated processing streams. This finding is discussed in the context of other brain structures in which neuroanatomical and connectional modularity have functional consequences.>SIGNIFICANCE STATEMENT Many brain regions contain subnuclear microarchitectures, such as the matrix-striosome organization of the basal ganglia or the patch-interpatch organization of the visual cortex, that shed light on circuit complexities. In the present study, we demonstrate the presence of one such micro-organization in the rodent inferior colliculus. While this structure is typically viewed as an auditory integration center, its lateral cortex appears to be involved in multisensory operations and receives input from somatosensory brain regions. We show here that the lateral cortex can be further subdivided into multiple processing streams: modular regions, which are targeted by somatosensory inputs, and extramodular zones that receive auditory information.
机译:下丘的外侧皮质从听觉和体感结构接收信息,并被认为在多感官整合中起作用。在大鼠中的先前研究表明,该细胞核包含一系列独特的解剖模块,可对GAD-67以及其他神经化学标记物进行染色。在本研究中,我们试图更好地表征小鼠下丘脑中的这些模块,并确定其他神经结构与外侧皮层的连通性是否在空间上与这些神经化学模块的分布有关。对GAD-67和其他标记物的染色揭示了在小鼠侧皮质的整个后尾神经范围内的单个模块化网络。发现来自体感皮层和背柱核的体感输入几乎完全在这些模块化区域内终止。但是,来自下丘的听觉皮层和中央核的投影形成了与GAD-67阳性模块相互交叉的斑块。这些结果表明,小鼠下丘的外侧皮质表现出连接性以及神经化学模块性,并且可能包含多个分离的处理流。此发现是在其他大脑结构的背景下讨论的,在这些结构中神经解剖学和连接模块性会产生功能性后果。>重要声明许多大脑区域包含亚核微结构,例如基底神经节的基质-纹状体组织或视觉皮层的修补程序-修补程序组织,可以了解电路的复杂性。在本研究中,我们证明了在啮齿动物下丘的一种这样的微组织的存在。虽然此结构通常被视为听觉整合中心,但其外侧皮质似乎参与了多感觉操作,并从体感大脑区域接收输入。我们在这里显示,横向皮层可以进一步细分为多个处理流:以体感输入为目标的模块化区域,以及接收听觉信息的超模块化区域。

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