To survive in an ever-changing environment, the brain must seamlessly integrate a rich stream of incoming information into coherent internal representations that can then be used to efficiently plan for action. The brain must, however, balance its ability to integrate information from various sources with a complementary capacity to segregate information into modules which perform specialized computations in local circuits. Importantly, evidence suggests that imbalances in the brain's ability to bind together and/or segregate information over both space and time is a common feature of several neuropsychiatric disorders. Most studies have, however, until recently strictly attempted to characterize the principles of integration and segregatio...
While segregation and integration of neural information in the neocortex are thought to be important...
Nervous systems facing complex environments have to balance two seemingly opposing requirements. Fir...
The study of human brain networks with in vivo neuroimaging has given rise to the field of connectom...
To survive in an ever-changing environment, the brain must seamlessly integrate a rich stream of inc...
To survive in an ever-changing environment, the brain must seamlessly integrate a rich stream of inc...
Cognitive processing requires the ability to flexibly integrate and process information across large...
The brain regulates information flow by balancing the segregation and integration of incoming stimul...
The brain regulates information flow by balancing the segregation and integration of incoming stimul...
The study of human brain networks with in vivo neuroimaging has given rise to the field of connectom...
To survive in an ever-changing environment, the brain must seamlessly integrate a rich stream of inc...
Cognitive processing requires the ability to flexibly integrate and process information across large...
To survive in an ever-changing environment, the brain must seamlessly integrate a rich stream of inc...
The brain regulates information flow by balancing the segregation and integration of incoming stimul...
The brain regulates information flow by balancing the segregation and integration of incoming stimul...
The study of human brain networks with in vivo neuroimaging has given rise to the field of connectom...
While segregation and integration of neural information in the neocortex are thought to be important...
Nervous systems facing complex environments have to balance two seemingly opposing requirements. Fir...
The study of human brain networks with in vivo neuroimaging has given rise to the field of connectom...
To survive in an ever-changing environment, the brain must seamlessly integrate a rich stream of inc...
To survive in an ever-changing environment, the brain must seamlessly integrate a rich stream of inc...
Cognitive processing requires the ability to flexibly integrate and process information across large...
The brain regulates information flow by balancing the segregation and integration of incoming stimul...
The brain regulates information flow by balancing the segregation and integration of incoming stimul...
The study of human brain networks with in vivo neuroimaging has given rise to the field of connectom...
To survive in an ever-changing environment, the brain must seamlessly integrate a rich stream of inc...
Cognitive processing requires the ability to flexibly integrate and process information across large...
To survive in an ever-changing environment, the brain must seamlessly integrate a rich stream of inc...
The brain regulates information flow by balancing the segregation and integration of incoming stimul...
The brain regulates information flow by balancing the segregation and integration of incoming stimul...
The study of human brain networks with in vivo neuroimaging has given rise to the field of connectom...
While segregation and integration of neural information in the neocortex are thought to be important...
Nervous systems facing complex environments have to balance two seemingly opposing requirements. Fir...
The study of human brain networks with in vivo neuroimaging has given rise to the field of connectom...