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Lesion network mapping demonstrates that mind‐wandering is associated with the default mode network

Carissa L. Philippi, J. Bruss, A. Boes, F. M. Albazron, Carolina Deifelt Streese, E. Ciaramelli, David Rudrauf, Daniel Tranel

Journal of Neuroscience Research November 20, 2019 DOI: 10.1002/jnr.24648 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Observational cohort Peer reviewed
Sample size 48
Population Participants with brain injury and healthy comparison participants without brain injury
Topics Default mode network
Key findings Lesions affecting the default mode network, especially the left inferior parietal lobule, are associated with reduced mind-wandering frequency.

Abstract

Functional neuroimaging research has consistently associated brain structures within the default mode network (DMN) and frontoparietal network (FPN) with mind‐wandering. Targeted lesion research has documented impairments in mind‐wandering after damage to the medial prefrontal cortex (mPFC) and hippocampal regions associated with the DMN. However, no lesion studies to date have applied lesion network mapping to identify common networks associated with deficits in mind‐wandering. In lesion network mapping, resting‐state functional connectivity data from healthy participants are used to infer which brain regions are functionally connected to each lesion location from a sample with brain injury. In the current study, we conducted a lesion network mapping analysis to test the hypothesis that lesions affecting the DMN and FPN would be associated with diminished mind‐wandering. We assessed mind‐wandering frequency on the Imaginal Processes Inventory (IPI) in participants with brain injury (n = 29) and healthy comparison participants without brain injury (n = 19). Lesion network mapping analyses showed the strongest association of reduced mind‐wandering with the left inferior parietal lobule within the DMN. In addition, traditional lesion symptom mapping results revealed that reduced mind‐wandering was associated with lesions of the dorsal, ventral, and anterior sectors of mPFC, parietal lobule, and inferior frontal gyrus in the DMN (p < 0.05 uncorrected). These findings provide novel lesion support for the role of the DMN in mind‐wandering and contribute to a burgeoning literature on the neural correlates of spontaneous cognition.