Surgically disconnected temporal pole exhibits resting functional connectivity with remote brain regions

Author:

Warren David E.ORCID,Sutterer Matthew J.,Bruss Joel,Abel Taylor J.,Jones Andrew,Kawasaki Hiroto,Voss Michelle,Cassell Martin,Howard Matthew A.,Tranel Daniel

Abstract

AbstractFunctional connectivity, as measured by resting-state fMRI, has proven a powerful method for studying brain systems in the context of behavior, development, and disease states. However, the relationship of functional connectivity to structural connectivity remains unclear. If functional connectivity relies on structural connectivity, then anatomical isolation of a brain region should eliminate functional connectivity with other brain regions. We tested this by measuring functional connectivity of the surgically disconnected temporal pole in resection patients (N=5; mean age 37; 2F, 3M). Functional connectivity was evaluated based on coactivation of whole-brain fMRI data with the average low-frequency BOLD signal from disconnected tissue in each patient. In sharp contrast to our prediction, we observed significant functional connectivity between the disconnected temporal pole and remote brain regions in each disconnection case. These findings raise important questions about the neural bases of functional connectivity measures derived from the fMRI BOLD signal.

Publisher

Cold Spring Harbor Laboratory

Reference70 articles.

1. Functional Connectivity between Anatomically Unconnected Areas Is Shaped by Collective Network-Level Effects in the Macaque Cortex

2. Andersson, J. L. , Jenkinson, M. , Smith, S. , & others. (2007). Non-linear registration, aka Spatial normalisation FM-RIB technical report TR07JA2. FMRIB Analysis Group of the University of Oxford. Retrieved from https://www.fmrib.ox.ac.uk/analysis/techrep/tr07ja2/tr07ja2.pdf

3. Functional-Anatomic Fractionation of the Brain's Default Network

4. Regulation of blood flow in the microcirculation: role of conducted vasodilation

5. The locus coeruleus-norepinephrine network optimizes coupling of cerebral blood volume with oxygen demand;Journal of Cerebral Blood Flow & Metabolism,2012

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