4.7 Article

Resting state functional connectivity of the striatum in Parkinson's disease

Journal

BRAIN
Volume 135, Issue -, Pages 3699-3711

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/brain/aws281

Keywords

Parkinson's disease; functional MRI; striatum; brainstem; functional reorganization

Funding

  1. National Institute of Mental Health [K23MH081786]
  2. National Institute of Nursing Research [R01NR012907, R01NR012657]
  3. National Institute of Health [NS41509, NS075321, NS058714, RR024992, P50NS006833]
  4. National Institute of Neurologic Disorders and Stroke [P30 NS048056]
  5. American Parkinson Disease Association (APDA)
  6. Greater St. Louis Chapter of the APDA
  7. Barnes Jewish Hospital Foundation
  8. McDonnell Center for Higher Brain Function

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Classical accounts of the pathophysiology of Parkinson's disease have emphasized degeneration of dopaminergic nigrostriatal neurons with consequent dysfunction of cortico-striatal-thalamic loops. In contrast, post-mortem studies indicate that pathological changes in Parkinson's disease (Lewy neurites and Lewy bodies) first appear primarily in the lower brainstem with subsequent progression to more rostral parts of the neuraxis. The nigrostriatal and histological perspectives are not incompatible, but they do emphasize different anatomical structures. To address the question of which brain structures are functionally most affected by Parkinson's disease, we performed a resting-state functional magnetic resonance imaging study focused on striatal functional connectivity. We contrasted 13 patients with advanced Parkinson's disease versus 19 age-matched control subjects, using methodology incorporating scrupulous attention to minimizing the effects of head motion during scanning. The principal finding in the Parkinson's disease group was markedly lower striatal correlations with thalamus, midbrain, pons and cerebellum. This result reinforces the importance of the brainstem in the pathophysiology of Parkinson's disease. Focally altered functional connectivity also was observed in sensori-motor and visual areas of the cerebral cortex, as well the supramarginal gyrus. Striatal functional connectivity with the brainstem was graded (posterior putamen > anterior putamen > caudate), in both patients with Parkinson's disease and control subjects, in a manner that corresponds to well-documented gradient of striatal dopaminergic function loss in Parkinson's disease. We hypothesize that this gradient provides a clue to the pathogenesis of Parkinson's disease.

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