4.5 Article

Selective Activation of Resting-State Networks following Focal Stimulation in a Connectome-Based Network Model of the Human Brain

期刊

ENEURO
卷 3, 期 5, 页码 -

出版社

SOC NEUROSCIENCE
DOI: 10.1523/ENEURO.0068-16.2016

关键词

connectivity; connectome; criticality; network modeling; resting state; stimulation

资金

  1. Brain Network Recovery Group through James S. McDonnell Foundation
  2. European Union FP7-ICT Human Brain Project [60 402]

向作者/读者索取更多资源

When the brain is stimulated, for example, by sensory inputs or goal-oriented tasks, the brain initially responds with activities in specific areas. The subsequent pattern formation of functional networks is constrained by the structural connectivity (SC) of the brain. The extent to which information is processed over short-or long-range SC is unclear. Whole-brain models based on long-range axonal connections, for example, can partly describe measured functional connectivity dynamics at rest. Here, we study the effect of SC on the network response to stimulation. We use a human whole-brain network model comprising long-and short-range connections. We systematically activate each cortical or thalamic area, and investigate the network response as a function of its short-and long-range SC. We show that when the brain is operating at the edge of criticality, stimulation causes a cascade of network recruitments, collapsing onto a smaller space that is partly constrained by SC. We found both short-and long-range SC essential to reproduce experimental results. In particular, the stimulation of specific areas results in the activation of one or more resting-state networks. We suggest that the stimulus-induced brain activity, which may indicate information and cognitive processing, follows specific routes imposed by structural networks explaining the emergence of functional networks. We provide a lookup table linking stimulation targets and functional network activations, which potentially can be useful in diagnostics and treatments with brain stimulation.

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