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Updated: May 5, 2026

Cerebral Blood Flow-Based Resting State Functional Connectivity of the Human Brain using Optical Diffuse Correlation Spectroscopy
Published on: May 27, 2020
Optical imaging of resting-state functional connectivity in a novel arterial stiffness model
Edgar Guevara1, Nataliya Sadekova, Hélène Girouard
1Department of Electrical Engineering, École Polytechnique de Montréal, 2500 Chemin de Polytechnique, Montréal, Qc, H3C 3A7 Canada ; Research Center, Montreal Heart Institute, 5000 Bélanger Est, Montréal, Qc, H3T 1J4, Canada.
Abstract:
This study aims to assess the impact of unilateral increases in carotid stiffness on cortical functional connectivity measures in the resting state. Using a novel animal model of induced arterial stiffness combined with optical intrinsic signals and laser speckle imaging, resting state functional networks derived from hemodynamic signals are investigated for their modulation by isolated changes in stiffness of the right common carotid artery. By means of seed-based analysis, results showed a decreasing trend of homologous correlation in the motor and cingulate cortices. Furthermore, a graph analysis indicated a randomization of the cortex functional networks, suggesting a loss of connectivity, more specifically in the motor cortex lateral to the treated carotid, which however did not translate in differentiated metabolic activity.
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