Functional brain network changes associated with maintenance of cognitive function in multiple sclerosis

Santosh A. Helekar, Jae C. Shin, Brandi J. Mattson, Krystle Bartley, Milena Stosic, Toni Saldana-King, P. Read Montague, George J. Hutton

Research output: Contribution to journalArticle

28 Scopus citations

Abstract

In multiple sclerosis (MS) functional changes in connectivity due to cortical reorganization could lead to cognitive impairment (CI), or reflect a re-adjustment to reduce the clinical effects of widespread tissue damage. Such alterations in connectivity could result in changes in neural activation as assayed by executive function tasks. We examined cognitive function in MS patients with mild to moderate CI and age-matched controls. We evaluated brain activity using functional magnetic resonance imaging (fMRI) during the successful performance of the Wisconsin card sorting (WCS) task by MS patients, showing compensatory maintenance of normal function, as measured by response latency and error rate. To assess changes in functional connectivity throughout the brain, we performed a global functional brain network analysis by computing voxel-by-voxel correlations on the fMRI time series data and carrying out a hierarchical cluster analysis. We found that during the WCS task there is a significant reduction in the number of smaller size brain functional networks, and a change in the brain areas representing the nodes of these networks in MS patients compared to age-matched controls. There is also a concomitant increase in the strength of functional connections between brain loci separated at intermediate-scale distances in these patients. These functional alterations might reflect compensatory neuroplastic reorganization underlying maintenance of relatively normal cognitive function in the face of white matter lesions and cortical atrophy produced by MS.

Original languageEnglish
Article number219
Number of pages15
JournalFrontiers in Human Neuroscience
Volume4
DOIs
StatePublished - Dec 1 2010

Keywords

  • Connectivity
  • Demyelination
  • fMRI
  • Neuroimaging
  • Plasticity
  • White matter

ASJC Scopus subject areas

  • Psychiatry and Mental health
  • Neurology
  • Biological Psychiatry
  • Behavioral Neuroscience
  • Neuropsychology and Physiological Psychology

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