The relationship between anatomic connectivity of large-scale brain networks and their functional connectivity is of immense importance and an area of active research. Previous attempts have required complex simulations which model the dynamics of each cortical region, and explore the coupling between regions as derived by anatomic connections. While much insight is gained from these non-linear simulations, they can be computationally taxing tools for predicting functional from anatomic connectivities. Little attention has been paid to linear models. Here we show that a properly designed linear model appears to be superior to previous non-linear approaches in capturing the brain's long-range second order correlation structure that governs t...
Understanding how complex dynamic activity propagates over a static structural network is an overarc...
Over the past decade, scientific interest in the properties of large-scale spontaneous neural dynami...
Diffusion-weighted magnetic resonance imaging can be used to non-invasively probe the brain microstr...
Understanding the relationship between the dynamics of neural processes and the anatomical substrate...
Understanding the relationship between the dynamics of neural processes and the anatomical substrate...
Unravelling how the human brain structure gives rise to function is a central question in neuroscien...
International audienceWhile averaged dynamics of brain function are known to estimate the underlying...
Modern imaging methods allow a non-invasive assessment of both structural and functional brain conne...
In the cerebral cortex, the activity levels of neuronal populations are continuously fluctuating. Wh...
This study combines modeling of neuronal activity and networks derived from neuroimaging data in ord...
Modern imaging methods allow a non-invasive assessment of both structural and functional brain conne...
In recent years, there has been significant interest in investigating brain connectivity based on fu...
In recent years, there has been significant interest in investigating brain connectivity based on fu...
Over the past decade, a growing number of studies have investigated the relationship between the str...
Understanding how complex dynamic activity propagates over a static structural network is an overarc...
Understanding how complex dynamic activity propagates over a static structural network is an overarc...
Over the past decade, scientific interest in the properties of large-scale spontaneous neural dynami...
Diffusion-weighted magnetic resonance imaging can be used to non-invasively probe the brain microstr...
Understanding the relationship between the dynamics of neural processes and the anatomical substrate...
Understanding the relationship between the dynamics of neural processes and the anatomical substrate...
Unravelling how the human brain structure gives rise to function is a central question in neuroscien...
International audienceWhile averaged dynamics of brain function are known to estimate the underlying...
Modern imaging methods allow a non-invasive assessment of both structural and functional brain conne...
In the cerebral cortex, the activity levels of neuronal populations are continuously fluctuating. Wh...
This study combines modeling of neuronal activity and networks derived from neuroimaging data in ord...
Modern imaging methods allow a non-invasive assessment of both structural and functional brain conne...
In recent years, there has been significant interest in investigating brain connectivity based on fu...
In recent years, there has been significant interest in investigating brain connectivity based on fu...
Over the past decade, a growing number of studies have investigated the relationship between the str...
Understanding how complex dynamic activity propagates over a static structural network is an overarc...
Understanding how complex dynamic activity propagates over a static structural network is an overarc...
Over the past decade, scientific interest in the properties of large-scale spontaneous neural dynami...
Diffusion-weighted magnetic resonance imaging can be used to non-invasively probe the brain microstr...