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Right and left connectivity maps showed strong mirror image similarity, suggesting a high degree of lateral symmetry in mouse brain connections.
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Linear regression was performed to assess the relationship between MR outcomes in DLB patients (MD within right and left connectivity-defined subregions and metabolites/tCr within left and right thalami) and CAF scores (our primary clinical measure).
In this figure, we display the number of connections left after connectivity reduction normalized to the case without connectivity reduction and software bypassing applied with top-down scheduler for (a) adpcm and (b) blowfish.
In Figure 6c, we can see reduction in instruction width when connectivity reduction is applied, and Figure 6d shows the number of socket-to-bus connections left after connectivity reduction.
A detailed view of the number of socket-to-bus connections left after connectivity reduction for adpcm and blowfish is shown in Figure 10a,b, respectively.
It can also be seen from this figure that software bypassing has a little effect on the number of connections removed, with the largest difference of only about 5% and variation between the top-down and bottom-up schedules of only about 10%. Figure 10 The normalized number of connections left after connectivity reduction for each architecture.
In dementia with Lewy bodies, there were no significant differences in hippocampal connectivity compared with controls, but in Alzheimer's disease left hippocampal connectivity was greater compared with controls.
No areas showing stronger connectivity in dyslexic compared with nonimpaired readers were found for left STG connectivity.
Left panel: Connectivity strength (partial correlation coefficient) of anterior (left) and posterior EC (right) is plotted separately for the AT system (red) and the PM system (blue).
(A ) Left panel: connectivity of the network in Figure 3 with long-range connections of strength 0.05 added between 10% of the nodes.
Right panel: eigenvectors shown as in panel C of Figure 3. (B ) Left panel: connectivity of the network in Figure 5 with long-range connections of strength 0.05 added between 10% of the nodes.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com