Literature DB >> 33409436

Damage to the structural connectome reflected in resting-state fMRI functional connectivity.

Anirudh Wodeyar1, Jessica M Cassidy2, Steven C Cramer3, Ramesh Srinivasan1.   

Abstract

The relationship between structural and functional connectivity has been mostly examined in intact brains. Fewer studies have examined how differences in structure as a result of injury alters function. In this study we analyzed the relationship of structure to function across patients with stroke among whom infarcts caused heterogenous structural damage. We estimated relationships between distinct brain regions of interest (ROIs) from functional MRI in two pipelines. In one analysis pipeline, we measured functional connectivity by using correlation and partial correlation between 114 cortical ROIs. We found fMRI-BOLD partial correlation was altered at more edges as a function of the structural connectome (SC) damage, relative to the correlation. In a second analysis pipeline, we limited our analysis to fMRI correlations between pairs of voxels for which we possess SC information. We found that voxel-level functional connectivity showed the effect of structural damage that we could not see when examining correlations between ROIs. Further, the effects of structural damage on functional connectivity are consistent with a model of functional connectivity, diffusion, which expects functional connectivity to result from activity spreading over multiple edge anatomical paths.
© 2020 Massachusetts Institute of Technology.

Entities:  

Keywords:  Functional connectivity; Partial correlation; Stroke; Structural connectivity; fMRI

Year:  2020        PMID: 33409436      PMCID: PMC7781612          DOI: 10.1162/netn_a_00160

Source DB:  PubMed          Journal:  Netw Neurosci        ISSN: 2472-1751


  68 in total

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