Phase response theory explains cluster formation in sparsely but strongly connected inhibitory neural networks and effects of jitter due to sparse connectivity.
Tikidji-Hamburyan, Ruben A
Phase response theory explains cluster formation in sparsely but strongly connected inhibitory neural networks and effects of jitter due to sparse connectivity. [electronic resource] - Journal of neurophysiology 04 2019 - 1125-1142 p. digital
Publication Type: Journal Article; Research Support, N.I.H., Extramural
1522-1598
10.1152/jn.00728.2018 doi
Brain--physiology
Cortical Synchronization
Evoked Potentials
Humans
Models, Neurological
Neural Inhibition
Synaptic Transmission
Phase response theory explains cluster formation in sparsely but strongly connected inhibitory neural networks and effects of jitter due to sparse connectivity. [electronic resource] - Journal of neurophysiology 04 2019 - 1125-1142 p. digital
Publication Type: Journal Article; Research Support, N.I.H., Extramural
1522-1598
10.1152/jn.00728.2018 doi
Brain--physiology
Cortical Synchronization
Evoked Potentials
Humans
Models, Neurological
Neural Inhibition
Synaptic Transmission