The formation of transient networks in response to external stimuli or as a reflection of internal cognitive processes is a hallmark of human brain function. However, its identification in fMRI data of the human brain is notoriously difficult. Here we propose a new method of fMRI data analysis that tackles this problem by considering large-scale, task-related synchronisation networks. Networks consist of nodes and edges connecting them, where nodes correspond to voxels in fMRI data, and the weight of an edge is determined via task-related changes in dynamic synchronisation between their respective times series. Based on these definitions, we developed a new data analysis algorithm that identifies edges that show differing levels of synchron...
The brain is the most complex organ in the human body. Studying the functional organization of such ...
A network approach to brain and dynamics opens new perspectives towards understanding of its functio...
AbstractThe characterisation of dynamic electrophysiological brain networks, which form and dissolve...
The formation of transient networks in response to external stimuli or as a reflection of internal c...
The formation of transient networks in response to external stimuli or as a reflection of internal c...
The formation of transient networks in response to external stimuli or as a reflection of internal c...
<div><p>The formation of transient networks in response to external stimuli or as a reflection of in...
The formation of transient networks in response to external stimuli or as a reflection of internal c...
Introduction: The formation of transient networks in response to external stimuli or as a reflection...
Brain networks inferred from collective patterns of neuronal activity are cornerstones of experiment...
The human brain is the most fascinating and complex organ. It directs all our actions and thoughts. ...
The combination of ultra-high field fMRI with state-of-the art network approaches offers a unique wi...
The human brain forms functional networks on all spatial scales. Modern fMRI scanners allow for reso...
Cognition is thought to result from interactions within large-scale networks of brain regions. Here,...
The characterisation of dynamic electrophysiological brain networks, which form and dissolve in orde...
The brain is the most complex organ in the human body. Studying the functional organization of such ...
A network approach to brain and dynamics opens new perspectives towards understanding of its functio...
AbstractThe characterisation of dynamic electrophysiological brain networks, which form and dissolve...
The formation of transient networks in response to external stimuli or as a reflection of internal c...
The formation of transient networks in response to external stimuli or as a reflection of internal c...
The formation of transient networks in response to external stimuli or as a reflection of internal c...
<div><p>The formation of transient networks in response to external stimuli or as a reflection of in...
The formation of transient networks in response to external stimuli or as a reflection of internal c...
Introduction: The formation of transient networks in response to external stimuli or as a reflection...
Brain networks inferred from collective patterns of neuronal activity are cornerstones of experiment...
The human brain is the most fascinating and complex organ. It directs all our actions and thoughts. ...
The combination of ultra-high field fMRI with state-of-the art network approaches offers a unique wi...
The human brain forms functional networks on all spatial scales. Modern fMRI scanners allow for reso...
Cognition is thought to result from interactions within large-scale networks of brain regions. Here,...
The characterisation of dynamic electrophysiological brain networks, which form and dissolve in orde...
The brain is the most complex organ in the human body. Studying the functional organization of such ...
A network approach to brain and dynamics opens new perspectives towards understanding of its functio...
AbstractThe characterisation of dynamic electrophysiological brain networks, which form and dissolve...