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Challenges in MR image acquisition and analysis for probing the human connectome in vivo

机译:MR图像采集和分析在体内探测人体连接组方面的挑战

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One of the basic principles underlying modern neuroscience is that of connectional specificity; that is, neurons in different regions of the brain do not form connections randomly but rather in a manner that facilitates the processing of information among regions with related functions. A full characterization of the connectional specificity of the human brain would require identifying all connections between individual neurons and mapping the trajectories of the axons that connect them. This neuronal connectivity diagram, referred to as the human connectome, is unknown and beyond the reach of current technologies. However, recent advances in diffusion and functional MRI have opened the way to the study of major pathways in the brain, which are formed by bundles of axons running in parallel and terminating in groups of neurons with architectonic and functional homogeneity. These advances have brought us excitingly close to the in vivo, noninvasive mapping of the human connectome at the aggregate level but several technical challenges remain to be addressed.
机译:现代神经科学的基本原理之一是连接特异性。也就是说,大脑不同区域中的神经元不是随机地形成连接,而是以促进具有相关功能的区域之间的信息处理的方式形成连接。要完全表征人脑的连接特异性,就需要识别单个神经元之间的所有连接,并绘制连接它们的轴突的轨迹。这种神经元连接图,称为人类连接体,是未知的,并且超出了当前技术的范围。但是,扩散和功能MRI的最新进展为研究大脑中的主要途径开辟了道路,这些途径是由成束的轴突平行运行,并终止于具有结构和功能同质性的神经元组。这些进展使我们激动人心地接近了在总体上对人类连接体进行的体内,非侵入性标测的过程,但仍面临着一些技术挑战。

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