Brain lesions caused by cerebral ischemia lead to network disturbances in both hemispheres, causing a subsequent reorganization of functional connectivity both locally and remotely with respect to the injury. Quantitative electroencephalography (qEEG) methods have long been used for exploring brain electrical activity and functional connectivity modifications after stroke. However, results obtained so far are not univocal. Here, we used basic and advanced EEG methods to characterize how brain activity and functional connectivity change after stroke. Thirty-three unilateral post stroke patients in the sub-acute phase and ten neurologically intact age-matched right-handed subjects were enrolled. Patients were subdivided into two groups based ...
Introduction The purpose of this study was to characterize resting-state cortical networks in chroni...
Brain plasticity and functional reorganization are mechanisms behind functional motor recovery of pa...
Stroke lesions induce not only loss of local neural function, but disruptions in spatially distribut...
Brain lesions caused by cerebral ischemia lead to network disturbances in both hemispheres, causing ...
Brain lesions caused by cerebral ischemia lead to network disturbances in both hemispheres, causing ...
Brain lesions caused by cerebral ischemia lead to network disturbances in both hemispheres, causing ...
Brain lesions caused by cerebral ischemia lead to network disturbances in both hemispheres, causing ...
Brain lesions caused by cerebral ischemia lead to network disturbances in both hemispheres, causing ...
Brain lesions caused by cerebral ischemia lead to network disturbances in both hemispheres, causing ...
Brain lesions caused by cerebral ischemia lead to network disturbances in both hemispheres, causing ...
Cerebral post-stroke plasticity has been repeatedly investigated via functional neuroimaging techniq...
Cerebral post-stroke plasticity has been repeatedly investigated via functional neuroimaging techniq...
Background After cerebral ischemia, disruption and subsequent reorganization of functional connectio...
Background After cerebral ischemia, disruption and subsequent reorganization of functional connectio...
Introduction The purpose of this study was to characterize resting-state cortical networks in chroni...
Introduction The purpose of this study was to characterize resting-state cortical networks in chroni...
Brain plasticity and functional reorganization are mechanisms behind functional motor recovery of pa...
Stroke lesions induce not only loss of local neural function, but disruptions in spatially distribut...
Brain lesions caused by cerebral ischemia lead to network disturbances in both hemispheres, causing ...
Brain lesions caused by cerebral ischemia lead to network disturbances in both hemispheres, causing ...
Brain lesions caused by cerebral ischemia lead to network disturbances in both hemispheres, causing ...
Brain lesions caused by cerebral ischemia lead to network disturbances in both hemispheres, causing ...
Brain lesions caused by cerebral ischemia lead to network disturbances in both hemispheres, causing ...
Brain lesions caused by cerebral ischemia lead to network disturbances in both hemispheres, causing ...
Brain lesions caused by cerebral ischemia lead to network disturbances in both hemispheres, causing ...
Cerebral post-stroke plasticity has been repeatedly investigated via functional neuroimaging techniq...
Cerebral post-stroke plasticity has been repeatedly investigated via functional neuroimaging techniq...
Background After cerebral ischemia, disruption and subsequent reorganization of functional connectio...
Background After cerebral ischemia, disruption and subsequent reorganization of functional connectio...
Introduction The purpose of this study was to characterize resting-state cortical networks in chroni...
Introduction The purpose of this study was to characterize resting-state cortical networks in chroni...
Brain plasticity and functional reorganization are mechanisms behind functional motor recovery of pa...
Stroke lesions induce not only loss of local neural function, but disruptions in spatially distribut...