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基于功能连接的小鼠皮质中线结构分区和连接组学:灌注放射自显影研究。

Functional connectivity-based parcellation and connectome of cortical midline structures in the mouse: a perfusion autoradiography study.

机构信息

Department of Psychiatry and Behavioral Sciences, University of Southern California Los Angeles, CA, USA ; Departments of Neurology, Cell and Neurobiology, Biomedical Engineering, University of Southern California Los Angeles, CA, USA.

Department of Psychiatry and Behavioral Sciences, University of Southern California Los Angeles, CA, USA.

出版信息

Front Neuroinform. 2014 Jun 11;8:61. doi: 10.3389/fninf.2014.00061. eCollection 2014.

Abstract

Rodent cortical midline structures (CMS) are involved in emotional, cognitive and attentional processes. Tract tracing has revealed complex patterns of structural connectivity demonstrating connectivity-based integration and segregation for the prelimbic, cingulate area 1, retrosplenial dysgranular cortices dorsally, and infralimbic, cingulate area 2, and retrosplenial granular cortices ventrally. Understanding of CMS functional connectivity (FC) remains more limited. Here we present the first subregion-level FC analysis of the mouse CMS, and assess whether fear results in state-dependent FC changes analogous to what has been reported in humans. Brain mapping using [(14)C]-iodoantipyrine was performed in mice during auditory-cued fear conditioned recall and in controls. Regional cerebral blood flow (CBF) was analyzed in 3-D images reconstructed from brain autoradiographs. Regions-of-interest were selected along the CMS anterior-posterior and dorsal-ventral axes. In controls, pairwise correlation and graph theoretical analyses showed strong FC within each CMS structure, strong FC along the dorsal-ventral axis, with segregation of anterior from posterior structures. Seed correlation showed FC of anterior regions to limbic/paralimbic areas, and FC of posterior regions to sensory areas-findings consistent with functional segregation noted in humans. Fear recall increased FC between the cingulate and retrosplenial cortices, but decreased FC between dorsal and ventral structures. In agreement with reports in humans, fear recall broadened FC of anterior structures to the amygdala and to somatosensory areas, suggesting integration and processing of both limbic and sensory information. Organizational principles learned from animal models at the mesoscopic level (brain regions and pathways) will not only critically inform future work at the microscopic (single neurons and synapses) level, but also have translational value to advance our understanding of human brain architecture.

摘要

啮齿动物皮质中线结构(CMS)参与情绪、认知和注意力过程。追踪研究揭示了复杂的结构连接模式,表明了前扣带回、扣带回 1 区、背侧后眶回颗粒皮质的基于连接的整合和分离,以及边缘下皮质、扣带回 2 区和腹侧后眶回颗粒皮质。对 CMS 功能连接(FC)的理解仍然较为有限。在这里,我们首次进行了 CMS 的亚区水平 FC 分析,并评估了恐惧是否会导致类似于在人类中报道的状态依赖性 FC 变化。在听觉线索恐惧条件反射回忆期间和在对照小鼠中使用 [(14)C]-碘安替比林进行脑映射。在从脑放射自显影重建的 3-D 图像中分析区域脑血流(CBF)。在 CMS 前-后和背-腹轴线上选择了感兴趣区域。在对照中,成对相关性和图论分析显示了每个 CMS 结构内的强 FC,沿背-腹轴的强 FC,前部结构与后部结构的分离。种子相关性显示了前区与边缘/边缘区的 FC,以及后区与感觉区的 FC-这些发现与在人类中注意到的功能分离一致。恐惧回忆增加了扣带回和后眶回皮质之间的 FC,但减少了背侧和腹侧结构之间的 FC。与人类报告一致,恐惧回忆扩大了前区结构与杏仁核和躯体感觉区的 FC,表明对边缘和感觉信息的整合和处理。从中尺度(脑区和通路)动物模型中获得的组织原则不仅将批判性地为微观水平(单个神经元和突触)的未来工作提供信息,而且具有转化价值,可以促进我们对人类大脑结构的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46e8/4052632/c9f9e531f376/fninf-08-00061-g0001.jpg

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