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“高阶中继”后丘脑核中的组合输入景观。

A Combinatorial Input Landscape in the "Higher-Order Relay" Posterior Thalamic Nucleus.

机构信息

Department of Anatomy and Neuroscience, School of Medicine, Universidad Autónoma de Madrid, Madrid 28029, Spain.

Department of Physiology, Anatomy and Genetics, University of Oxford, Oxford OX1 3PT, United Kingdom.

出版信息

J Neurosci. 2022 Oct 12;42(41):7757-7781. doi: 10.1523/JNEUROSCI.0698-22.2022. Epub 2022 Sep 12.

Abstract

All pathways targeting the thalamus terminate directly onto the thalamic projection cells. As these cells lack local excitatory interconnections, their computations are fundamentally defined by the type and local convergence patterns of the extrinsic inputs. These two key variables, however, remain poorly defined for the "higher-order relay" (HO) nuclei that constitute most of the thalamus in large-brained mammals, including humans. Here, we systematically analyzed the input landscape of a representative HO nucleus of the mouse thalamus, the posterior nucleus (Po). We examined in adult male and female mice the neuropil distribution of terminals immunopositive for markers of excitatory or inhibitory neurotransmission, mapped input sources across the brain and spinal cord and compared the intranuclear distribution and varicosity size of axons originated from each input source. Our findings reveal a complex landscape of partly overlapping input-specific microdomains. Cortical layer (L)5 afferents from somatosensory and motor areas predominate in central and ventral Po but are relatively less abundant in dorsal and lateral portions of the nucleus. Excitatory inputs from the trigeminal complex, dorsal column nuclei (DCN), spinal cord and superior colliculus as well as inhibitory terminals from anterior pretectal nucleus and zona incerta (ZI) are each abundant in specific Po regions and absent from others. Cortical L6 and reticular thalamic nucleus terminals are evenly distributed across Po. Integration of specific input motifs by particular cell subpopulations may be commonplace within HO nuclei and favor the emergence of multiple, functionally diverse input-output subnetworks. Because thalamic projection neurons lack local interconnections, their output is essentially determined by the kind and convergence of the long-range inputs that they receive. Fragmentary evidence suggests that these parameters may vary within the "higher-order relay" (HO) nuclei that constitute much of the thalamus, but such variation has not been systematically analyzed. Here, we mapped the origin and local convergence of all the extrinsic inputs reaching the posterior nucleus (Po), a typical HO nucleus of the mouse thalamus by combining multiple neuropil labeling and axon tracing methods. We report a complex mosaic of partly overlapping input-specific domains within Po. Integration of different input motifs by specific cell subpopulations in HO nuclei may favor the emergence of multiple, computationally specialized thalamocortical subnetworks.

摘要

所有靶向丘脑的通路都直接终止于丘脑投射细胞。由于这些细胞缺乏局部兴奋性的相互连接,它们的计算功能主要由外在输入的类型和局部汇聚模式来定义。然而,对于构成包括人类在内的大型哺乳动物大部分丘脑的“高级中继”(HO)核,这两个关键变量仍然定义不明确。在这里,我们系统地分析了小鼠丘脑的一个代表性 HO 核,即后核(Po)的输入景观。我们在成年雄性和雌性小鼠中检查了标记兴奋性或抑制性神经递质的免疫阳性末梢在神经间质中的分布,绘制了跨越大脑和脊髓的输入源图谱,并比较了源自每个输入源的轴突在核内的分布和膨体大小。我们的研究结果揭示了一个复杂的、部分重叠的输入特异性微区景观。来自躯体感觉和运动区的皮质层(L)5 传入纤维在前核的中心和腹侧占主导地位,但在核的背侧和外侧部分相对较少。来自三叉神经复合体、背柱核(DCN)、脊髓和上丘的兴奋性传入以及来自前视前核和间脑(ZI)的抑制性末梢在特定的 Po 区域丰富存在,而在其他区域则不存在。皮质 L6 和网状丘脑核末梢在 Po 中均匀分布。特定细胞亚群对特定输入模式的整合可能在 HO 核中很常见,并有利于多个功能多样化的输入-输出子网的出现。由于丘脑投射神经元缺乏局部连接,它们的输出基本上由它们接收的长程输入的类型和汇聚决定。零碎的证据表明,这些参数在构成大部分丘脑的“高级中继”(HO)核内可能有所不同,但这种变化尚未得到系统分析。在这里,我们通过结合多种神经间质标记和轴突追踪方法,绘制了到达后核(Po)的所有外在输入的起源和局部汇聚图,Po 是小鼠丘脑的一个典型 HO 核。我们报告了 Po 内部分重叠的输入特异性域的复杂镶嵌。HO 核内特定细胞亚群对不同输入模式的整合可能有利于多个计算专业化的丘脑皮质子网的出现。

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