纤维束成像
连接组学
人类连接体项目
连接体
神经影像学
神经科学
计算机科学
磁共振弥散成像
人脑
人工智能
磁共振成像
功能连接
心理学
医学
放射科
作者
Markus Axer,Katrin Amunts
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2022-11-03
卷期号:378 (6619): 500-504
被引量:84
标识
DOI:10.1126/science.abq2599
摘要
A comprehensive description of how neurons and entire brain regions are interconnected is fundamental for a mechanistic understanding of brain function and dysfunction. Neuroimaging has shaped the way to approaching the human brain's connectivity on the basis of diffusion magnetic resonance imaging and tractography. At the same time, polarization, fluorescence, and electron microscopy became available, which pushed spatial resolution and sensitivity to the axonal or even to the synaptic level. New methods are mandatory to inform and constrain whole-brain tractography by regional, high-resolution connectivity data and local fiber geometry. Machine learning and simulation can provide predictions where experimental data are missing. Future interoperable atlases require new concepts, including high-resolution templates and directionality, to represent variants of tractography solutions and estimates of their accuracy.
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