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For DRs, greater relative inward connectivity from the rest of the brain areas to the right TPA was associated with relatively better performance, while greater relative outward connectivity from the right TPA to the rest of the brain areas was associated with relatively worse performance.
As seen in Figure 2 A, performance was related to the difference between inward and outward connectivity (r15 = −0.66, P < 0.005) such that better performance was associated with relatively greater outward connectivity from the left TPA to the other brain areas and a lower inward connectivity from the other regions of the brain to the left TPA.
Given that the connectivity between the left or the right TPAs and other brain areas key for phonological processes was not different between DRs and TRs for any frequency band, it is reasonable to presume that the left TPA, in particular, has an adequate inward connectivity, permitting it to be optimally stimulated.
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These include regeneration around stations, the creation of jobs not directly created in the construction of the line, inward investment, connectivity of the regions, and increased trade links.
The switch in Schiff base connectivity from inward to outward in the one-photon attractant signaling photoreaction of the wild-type SRI−HtrI complex reported here is a crucial aspect of the model.
Connectivity was significantly influenced by an interaction between direction and performance, indicating that the relative balance between inward versus outward connectivity was related to task performance.
Connectivity was influenced by an interaction among performance, direction, and reading group, indicating that the relative balance between inward versus outward connectivity was related to task performance but this was different across reading groups.
Specifically, participants with a balance between inward and outward connectivity may be using nonhierarchical small-world network topography.
Within all of the frequency bands, there were no overall group differences in inward versus outward connectivity to and from the TPA.
Across both reading groups the balance of inward versus outward connectivity to/from the left TPA to other regions of the brain was associated with phonological decoding performance.
In contrast, those participants who have greater outward as compared with inward left TPA connectivity may be using hierarchical network topography.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com