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Patterns in Cortical Connectivity for Determining Outcomes in Hand Function after Subcortical Stroke

  • Dazhi Yin
  • , Fan Song
  • , Dongrong Xu*
  • , Bradley S. Peterson
  • , Limin Sun
  • , Weiwei Men
  • , Xu Yan
  • , Mingxia Fan
  • *Corresponding author for this work
  • Huashan Hospital
  • Columbia University
  • East China Normal University

Research output: Contribution to journalArticlepeer-review

Abstract

Background and Purpose: Previous studies have noted changes in resting-state functional connectivity during motor recovery following stroke. However, these studies always uncover various patterns of motor recovery. Moreover, subgroups of stroke patients with different outcomes in hand function have rarely been studied. Materials and Methods: We selected 24 patients who had a subcortical stroke in the left motor pathway and displayed only motor deficits. The patients were divided into two subgroups: completely paralyzed hands (CPH) (12 patients) and partially paralyzed hands (PPH) (12 patients). Twenty-four healthy controls (HC) were also recruited. We performed functional connectivity analysis in both the ipsilesional and contralesional primary motor cortex (M1) to explore the differences in the patterns between each pair of the three diagnostic groups. Results: Compared with the HC, the PPH group displays reduced connectivity of both the ipsilesional and contralesional M1 with bilateral prefrontal gyrus and contralesional cerebellum posterior lobe. The connectivity of both the ipsilesional and contralesional M1 with contralateral primary sensorimotor cortex was reduced in the CPH group. Additionally, the connectivity of the ipsilesional M1 with contralesional postcentral gyrus, superior parietal lobule and ipsilesional inferior parietal lobule was reduced in the CPH group compared with the PPH group. Moreover, the connectivity of these regions was positively correlated with the Fugl-Meyer Assessment scores (hand+wrist) across all stroke patients. Conclusions: Patterns in cortical connectivity may serve as a potential biomarker for the neural substratum associated with outcomes in hand function after subcortical stroke.

Original languageEnglish
Article numbere52727
JournalPLoS ONE
Volume7
Issue number12
DOIs
StatePublished - 20 Dec 2012

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