首页> 外文期刊>Frontiers in Physics >Exercise training reinstates cortico-cortical sensorimotor functional connectivity following striatal lesioning: development and application of a subregional-level analytic toolbox for perfusion autoradiographs of the rat brain
【24h】

Exercise training reinstates cortico-cortical sensorimotor functional connectivity following striatal lesioning: development and application of a subregional-level analytic toolbox for perfusion autoradiographs of the rat brain

机译:运动训练可恢复纹状体损伤后的皮质-皮层感觉运动功能连接:子区域水平分析工具箱的开发和应用,用于大鼠脑部放射自显影

获取原文
       

摘要

Current rodent connectome projects are revealing brain structural connectivity with unprecedented resolution and completeness. How subregional structural connectivity relates to subregional functional interactions is an emerging research topic. We describe a method for standardized, mesoscopic-level data sampling from autoradiographic coronal sections of the rat brain, and for correlation-based analysis and intuitive display of cortico-cortical functional connectivity (FC) on a flattened cortical map. A graphic user interface a??Cx-2Da?? allows for the display of significant correlations of individual regions-of-interest, as well as graph theoretical metrics across the cortex. Cx-2D was tested on an autoradiographic data set of cerebral blood flow (CBF) of rats that had undergone bilateral striatal lesions, followed by 4 weeks of aerobic exercise training or no exercise. Effects of lesioning and exercise on cortico-cortical FC were examined during a locomotor challenge in this rat model of Parkinsonism. Subregional FC analysis revealed a rich functional reorganization of the brain in response to lesioning and exercise that was not apparent in a standard analysis focused on CBF of isolated brain regions. Lesioned rats showed diminished degree centrality of lateral primary motor cortex, as well as neighboring somatosensory cortexa??-changes that were substantially reversed in lesioned rats following exercise training. Seed analysis revealed that exercise increased positive correlations in motor and somatosensory cortex, with little effect in non-sensorimotor regions such as visual, auditory, and piriform cortex. The current analysis revealed that exercise partially reinstated sensorimotor FC lost following dopaminergic deafferentation. Cx-2D allows for standardized data sampling from images of brain slices, as well as analysis and display of cortico-cortical FC in the rat cerebral cortex with potential applications in a variety of autoradiographic and histologic studies.
机译:当前的啮齿动物连接组项目正在以前所未有的分辨率和完整性揭示大脑结构的连接性。次区域结构连通性如何与次区域功能相互作用相关是一个新兴的研究主题。我们描述了一种方法,用于从大鼠大脑放射自显影冠状切面进行标准化,介观水平的数据采样,以及在扁平化皮质图上进行基于相关性的分析和皮质-皮质功能连接性(FC)的直观显示。图形用户界面a ?? Cx-2Da ??允许显示各个感兴趣区域的显着相关性,并显示整个皮质的理论指标。在经历了双侧纹状体损伤,然后进行4周有氧运动训练或不运动的大鼠的脑血流(CBF)放射自显影数据集上测试了Cx-2D。在帕金森病大鼠模型中,在运动挑战期间检查了损伤和运动对皮质-皮质FC的影响。次区域FC分析显示,大脑对病变和运动的反应具有丰富的功能重组,而在针对孤立的大脑区域的CBF的标准分析中,这并不明显。患病的大鼠表现出外侧初级运动皮层的程度中心性降低,并且运动训练后患病的大鼠中邻近的体感皮层β-改变基本上被逆转。种子分析显示,运动增加了运动皮层和体感皮层的正相关性,而在非感觉性运动区域(如视觉,听觉和梨状皮层)的影响很小。目前的分析显示,运动会在多巴胺能脱除咖啡因后恢复部分丧失的感觉运动功能。 Cx-2D允许从脑切片图像进行标准化数据采样,以及在大鼠脑皮层中分析和显示皮质皮质FC,并可能在各种放射自显影和组织学研究中得到应用。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号