Functional connectome reorganization relates to post-stroke motor recovery and structural and functional disconnection.

TitleFunctional connectome reorganization relates to post-stroke motor recovery and structural and functional disconnection.
Publication TypeJournal Article
Year of Publication2021
AuthorsOlafson ER, Jamison KW, Sweeney EM, Liu H, Wang D, Bruss JE, Boes AD, Kuceyeski A
JournalNeuroimage
Volume245
Pagination118642
Date Published2021 12 15
ISSN1095-9572
KeywordsAdult, Aged, Case-Control Studies, Connectome, Female, Humans, Image Processing, Computer-Assisted, Imaging, Three-Dimensional, Magnetic Resonance Imaging, Male, Middle Aged, Motor Cortex, Recovery of Function, Stroke
Abstract

Motor recovery following ischemic stroke is contingent on the ability of surviving brain networks to compensate for damaged tissue. In rodent models, sensory and motor cortical representations have been shown to remap onto intact tissue around the lesion site, but remapping to more distal sites (e.g. in the contralesional hemisphere) has also been observed. Resting state functional connectivity (FC) analysis has been employed to study compensatory network adaptations in humans, but mechanisms and time course of motor recovery are not well understood. Here, we examine longitudinal FC in 23 first-episode ischemic pontine stroke patients and utilize a graph matching approach to identify patterns of functional connectivity reorganization during recovery. We quantified functional reorganization between several intervals ranging from 1 week to 6 months following stroke, and demonstrated that the areas that undergo functional reorganization most frequently are in cerebellar/subcortical networks. Brain regions with more structural and functional connectome disruption due to the stroke also had more remapping over time. Finally, we show that functional reorganization is correlated with the extent of motor recovery in the early to late subacute phases, and furthermore, individuals with greater baseline motor impairment demonstrate more extensive early subacute functional reorganization (from one to two weeks post-stroke) and this reorganization correlates with better motor recovery at 6 months. Taken together, these results suggest that our graph matching approach can quantify recovery-relevant, whole-brain functional connectivity network reorganization after stroke.

DOI10.1016/j.neuroimage.2021.118642
Alternate JournalNeuroimage
PubMed ID34637901
PubMed Central IDPMC8805675
Grant ListR21 NS120227 / NS / NINDS NIH HHS / United States
R21 NS104634 / NS / NINDS NIH HHS / United States
R01 NS102646 / NS / NINDS NIH HHS / United States
R01 NS114405 / NS / NINDS NIH HHS / United States
RF1 MH123232 / MH / NIMH NIH HHS / United States
Related Institute: 
Brain Health Imaging Institute (BHII)

Weill Cornell Medicine
Department of Radiology
525 East 68th Street New York, NY 10065