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Genetic-Based Dissection Unveils the Inputs and Outputs of Striatal Patch and Matrix Compartments

机译:基于遗传的解剖揭示了纹状体斑块和基质隔室的输入和输出

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摘要

The striatum contains neurochemically defined compartments termed patches and matrix. Previous studies suggest patches preferentially receive limbic inputs and project to dopamine neurons in substantia nigra pars compacta (SNc), whereas matrix neurons receive sensorimotor inputs and do not innervate SNc. Using BAC-Cre transgenic mice with viral tracing techniques, we mapped brain-wide differences in the input-output organization of the patch/matrix. Findings reveal a displaced population of striatal patch neurons termed "exo-patch,'' which reside in matrix zones but have neurochemistry, connectivity, and electrophysiological characteristics resembling patch neurons. Contrary to previous studies, results show patch/exo-patch and matrix neurons receive both limbic and sensorimotor information. A novel inhibitory projection from bed nucleus of the stria terminalis to patch/exo-patch neurons was revealed. Projections to SNc were found to originate from patch/exo-patch and matrix neurons. These findings redefine patch/matrix beyond traditional neurochemical topography and reveal new principles about their input-output connectivity, providing a foundation for future functional studies.
机译:纹状体包含神经化学定义的区室,称为膜片和基质。先前的研究表明,斑块优先接受边缘输入,并投射到黑质致密部(SNc)中的多巴胺神经元,而基质神经元则接收感觉运动输入,而不支配SNc。使用具有病毒示踪技术的BAC-Cre转基因小鼠,我们在补丁/矩阵的输入-输出组织中绘制了全脑差异。研究结果发现,被置换的纹状体贴片神经元被称为“ exo-patch”,位于基质区,但具有类似于贴片神经元的神经化学,连通性和电生理特性,与先前的研究相反,结果显示贴片/ exo-patch和基质神经元接收边缘和感觉运动信息,揭示了从纹状体终末床核到膜片/外膜片神经元的新抑制投射,发现对SNc的投射来自膜片/外膜片和基质神经元,这些发现重新定义了膜片/矩阵超越了传统的神经化学地形学,并揭示了有关其输入-输出连通性的新原理,为将来的功能研究奠定了基础。

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