<p>(a) τ value distribution of all 48 features represented in the LOOCV. The horizontal axis represents each functional connection and the vertical axis represents the weighted Kendall tau correlation coefficient. (b) Region weights and the distribution of the 20 high discriminative power functional connections. Regions are color-coded by category, red sphere represented default mode network, green sphere represented attentional network, brown sphere represented cerebellum.</p
[EN] The study of resting-state functional brain networks is a powerful tool to understand the neuro...
<p>Blu-light blu and red-yellow show clusters where POAG patients have, respectively, significantly ...
<p>The resting-state functional connectivity map of each subregion of the frontal pole of each group...
<p>Regions are color-coded by category (CON, blue; DMN, green; cerebellum, red; visual network, brow...
<p>Upper panel: The features selected in the VaD patients. The node size is proportional to the freq...
<p>Maps of the left five ACC sub-regions and the right five ACC sub-regions in the HC group (A, B) a...
<p>Regions that showed a significant functional connectivity (FC) with supplementary motor area (SMA...
<p>Regions showing significant changes in functional connectivity in the (A) right executive control...
<p>Regions showing significantly different functional connectivity within attention-related brain ne...
<p>Regions that showed a significant functional connectivity (FC) with putamen in patients with Park...
<p>Resting state left amygdala FC pattern for (a) LOD group, (b) HC group. Resting state right amygd...
<p>(a) Differences in functional connectivity for the left middle frontal gyrus seeds between the PD...
<p><b>Permutation test in the intra- (a) and inter-network (b) connectivity.</b> a: yellow circle re...
<p><b>A)</b> For each pair of channels, the distribution of values of across subjects is built for...
<p><b>A)</b> Changes weighted by their z-score and averaged across inputs or outputs (top) and in ab...
[EN] The study of resting-state functional brain networks is a powerful tool to understand the neuro...
<p>Blu-light blu and red-yellow show clusters where POAG patients have, respectively, significantly ...
<p>The resting-state functional connectivity map of each subregion of the frontal pole of each group...
<p>Regions are color-coded by category (CON, blue; DMN, green; cerebellum, red; visual network, brow...
<p>Upper panel: The features selected in the VaD patients. The node size is proportional to the freq...
<p>Maps of the left five ACC sub-regions and the right five ACC sub-regions in the HC group (A, B) a...
<p>Regions that showed a significant functional connectivity (FC) with supplementary motor area (SMA...
<p>Regions showing significant changes in functional connectivity in the (A) right executive control...
<p>Regions showing significantly different functional connectivity within attention-related brain ne...
<p>Regions that showed a significant functional connectivity (FC) with putamen in patients with Park...
<p>Resting state left amygdala FC pattern for (a) LOD group, (b) HC group. Resting state right amygd...
<p>(a) Differences in functional connectivity for the left middle frontal gyrus seeds between the PD...
<p><b>Permutation test in the intra- (a) and inter-network (b) connectivity.</b> a: yellow circle re...
<p><b>A)</b> For each pair of channels, the distribution of values of across subjects is built for...
<p><b>A)</b> Changes weighted by their z-score and averaged across inputs or outputs (top) and in ab...
[EN] The study of resting-state functional brain networks is a powerful tool to understand the neuro...
<p>Blu-light blu and red-yellow show clusters where POAG patients have, respectively, significantly ...
<p>The resting-state functional connectivity map of each subregion of the frontal pole of each group...