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Long-range connectomics

delete2013-09-24
delete24
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OA
AI
S
Saâd Jbabdi *
T
Timothy E.J. Behrens
DOI:10.1111/nyas.12271delete
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Abstract

Abstract

En 中文
Decoding neural algorithms is one of the major goals of neuroscience. It is generally accepted that brain computations rely on the orchestration of neural activity at local scales, as well as across the brain through long-range connections. Understanding the relationship between brain activity and connectivity is therefore a prerequisite to cracking the neural code. In the past few decades, tremendous technological advances have been achieved in connectivity measurement techniques. We now possess a battery of tools to measure brain activity and connections at all available scales. A great source of excitement are the new in vivo tools that allow us to measure structural and functional connections noninvasively. Here, we discuss how these new technologies may contribute to deciphering the neural code.
Keywords:
brain connections
chemical tracers
tractography
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Journal

C
Conference Reports: Evolutionary Dynamics and Information Hierarchies in Biological Systems: Aspen Center for Physics Workshop and Cracking the Neural Code: Third Annual Aspen Brain Forums
IF:
0
Papers:
6
Citations:
0

Organization

U
university of oxford
Scholars:
9.7W
Papers: 8.6W
Citations: 137