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  4. Biophysical mechanism underlying compensatory preservation of neural synchrony over the adult lifespan
 
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Biophysical mechanism underlying compensatory preservation of neural synchrony over the adult lifespan

Date Issued
2022-12-01
Author(s)
Pathak, Anagh
Sharma, Vivek
Roy, Dipanjan
Banerjee, Arpan
DOI
10.1038/s42003-022-03489-4
Abstract
We propose that the preservation of functional integration, estimated from measures of neural synchrony, is a key objective of neurocompensatory mechanisms associated with healthy human ageing. To support this proposal, we demonstrate how phase-locking at the peak alpha frequency in Magnetoencephalography recordings remains invariant over the lifespan in a large cohort of human participants, aged 18-88 years. Using empirically derived connection topologies from diffusion tensor imaging data, we create an in-silico model of whole-brain alpha dynamics. We show that enhancing inter-areal coupling can cancel the effect of increased axonal transmission delays associated with age-related degeneration of white matter tracts, albeit at slower network frequencies. By deriving analytical solutions for simplified connection topologies, we further establish the theoretical principles underlying compensatory network re-organization. Our findings suggest that frequency slowing with age- frequently observed in the alpha band in diverse populations- may be viewed as an epiphenomenon of the underlying compensatory mechanism.
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