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April 16, 2026Brain Circulation0 citationsOpen Access

Association between neurovascular coupling, functional connectivity, and stroke prognosis: A functional near-infrared spectroscopy prognostic study

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WWWenjie WangLDLingling DingJCJie Chen

Key Points

  • This study aims to investigate how functional connectivity and neurovascular coupling relate to functional outcomes in stroke patients.
  • Assessed acute-phase functional connectivity and neurovascular coupling using functional near-infrared spectroscopy.
  • Evaluated 60 stroke patients within 7 days post-stroke.
  • Dichotomized functional outcomes using the modified Rankin Scale at 90 days.
  • Applied logistic regression models to predict unfavorable outcomes based on selected variables.
  • Favorable outcomes were associated with stronger global functional connectivity and bilateral cortical activation.
  • Unfavorable outcomes showed a compensatory activation pattern predominantly in contralesional areas.
  • The Firth’s logistic regression model achieved an AUC of 0.86, identifying key neuroimaging predictors.

Abstract

Abstract: BACKGROUND: The predictive value of acute-phase functional connectivity (FC) and neurovascular coupling (NVC) for functional prognosis in stroke patients remains unclear. METHODS: In a prospective cohort of 60 stroke patients, functional near-infrared spectroscopy assessed FC, brain activation pattern, and NVC (indexed by general linear model–derived β values) within 7 days post-stroke. Functional outcome (modified Rankin Scale mRS score at 90 days) was dichotomized as favorable (mRS 0–1) or unfavorable. Least Absolute Shrinkage and Selection Operator regression selected variables for a Firth’s logistic regression model predicting unfavorable outcome risk. RESULTS: Patients with a favorable outcome showed stronger global FC and bilateral cortical activation, whereas unfavorable patients exhibited predominantly contralesional compensatory pattern. Task-evoked responses were greater in favorable group in the ipsilesional primary motor cortex (iM1, t = 2.09, q = 0.04) and bilateral somatosensory association cortex (SAC, ipsilesional: t = 3.49, q < 0.001; contralesional: t = 2.34, q = 0.03). A Firth’s logistic regression model incorporating four predictors—admission National Institutes of Health Stroke Scale score, the contralesional frontoparietal cortex-ipsilesional supramarginal gyrus FC value, iM1-β value, and ipsilesional somatosensory association cortex-β (iSAC-β) value—achieved an area under the receiver-operating characteristic curve of 0.86, with the iSAC-β value emerging as the leading neuroimaging contributor. CONCLUSION: Acute-phase FC strength and NVC are predictive of 90-day functional outcome after stroke. Ipsilesional SAC may represent a potential target for acute-phase prognostic stratification and mechanistically informed interventions. TRIAL REGISTRATION: http://www.clinicaltrials.gov (identifier: NCT06925178).

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69e07dad2f7e8953b7cbe94ahttps://doi.org/10.4103/bc.bc_215_25
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