Resting state brain activity, as measured with functional magnetic resonance imaging (fMRI) in the absence of stimulation, is widely investigated in clinical, pharmacological, developmental and cross-species neuroscience research. However, despite the general and broad interest in understating the nature of resting state networks (RSNs), there has not been a thorough investigation into the relationship between these functional networks and their adherence to underling brain anatomy. We acquired resting state fMRI data from 10 subjects and extracted individual and group RSN maps respectively using independent component analysis (ICA) and self organising group-level ICA (sogICA). Cortex based alignment (CBA), an advanced surface based alignme...
Resting state brain networks have reached a strong popularity in recent scientific endeavors due to ...
[[abstract]]©2008 Elsevier - Group independent component analysis (gICA) was performed on resting-st...
Whole brain functional connectomes hold promise for understanding human brain activity across a rang...
Resting state brain activity, as measured with functional magnetic resonance imaging (fMRI) in the a...
Resting state brain activity, as measured with functional magnetic resonance imaging (fMRI) in the a...
At rest, spontaneous brain activity measured by fMRI is summarized by a number of distinct resting s...
Objective: Resting-state networks (RSNs), including the default mode network (DMN), have been consid...
Studies have shown that the brain is constituted by anatomically segregated and functionally specifi...
Resting state functional magnetic resonance imaging (fMRI) has been used to study brain networks ass...
Recently, human brain activity during a resting-state has attracted increasing attention. Several st...
BACKGROUND: Functional brain imaging studies have indicated that distinct anatomical brain regions c...
Background: Functional brain imaging studies have indicated that distinct anatomical brain regions c...
Resting state networks (RSNs) have been found in human brains during awake resting states. RSNs are ...
Image registration methods underpin many analysis techniques in neuroimaging. They are essential in ...
The human brain has been documented to be spatially organized in a finite set of specific coherent p...
Resting state brain networks have reached a strong popularity in recent scientific endeavors due to ...
[[abstract]]©2008 Elsevier - Group independent component analysis (gICA) was performed on resting-st...
Whole brain functional connectomes hold promise for understanding human brain activity across a rang...
Resting state brain activity, as measured with functional magnetic resonance imaging (fMRI) in the a...
Resting state brain activity, as measured with functional magnetic resonance imaging (fMRI) in the a...
At rest, spontaneous brain activity measured by fMRI is summarized by a number of distinct resting s...
Objective: Resting-state networks (RSNs), including the default mode network (DMN), have been consid...
Studies have shown that the brain is constituted by anatomically segregated and functionally specifi...
Resting state functional magnetic resonance imaging (fMRI) has been used to study brain networks ass...
Recently, human brain activity during a resting-state has attracted increasing attention. Several st...
BACKGROUND: Functional brain imaging studies have indicated that distinct anatomical brain regions c...
Background: Functional brain imaging studies have indicated that distinct anatomical brain regions c...
Resting state networks (RSNs) have been found in human brains during awake resting states. RSNs are ...
Image registration methods underpin many analysis techniques in neuroimaging. They are essential in ...
The human brain has been documented to be spatially organized in a finite set of specific coherent p...
Resting state brain networks have reached a strong popularity in recent scientific endeavors due to ...
[[abstract]]©2008 Elsevier - Group independent component analysis (gICA) was performed on resting-st...
Whole brain functional connectomes hold promise for understanding human brain activity across a rang...