Project summary

Functional coupling is a hallmark of brain networks, and there is a wealth of studies that have observed a relation between functional connectivity and cognition or sensorimotor processing. However, the vast majority of studies on this topic are correlative in nature, and causal evidence for the role of functional coupling is almost completely lacking. The cICMs project aims to fill this gap. We focus on two different types of intrinsic coupling modes (ICMs): phase ICMs, arising from phase coupling of oscillatory signals, and envelope ICMs, resulting from coupled fluctuations of signal envelopes.

We manipulate, analyze and model the different types of ICMs with the aim to establish an integrated view on their functions and interrelations which currently is still lacking. The neurophysiological experiments are complemented by information-theoretic analyses and computational modeling. This research program aims to develop an integrated multiscale framework for ICMs that is likely to have far-reaching mplications for a better understanding of the mechanisms underlying cognition and the complexity of the human mind.

Background

Explore the scientific background and the role of intrinsic coupling modes in brain network dynamics.

Strategy

How we investigate the causal role of intrinsic coupling modes in cognition and behavior.

Team

Meet the interdisciplinary team combining diverse expertise to advance the cICMs project.

Results

Discover key publications, datasets and scientific achievements from the cICMs project.

ERC Advanced Grant

Project No. ERC-2022-AdG-101097402

Funded by the European Research Council (ERC)

The cICMs project runs from July 2023 to June 2028