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May 9, 2026Journal of Cerebral Blood Flow & Metabolism0 citations

Quantitative susceptibility mapping for iron quantification of deep gray matter in patients with ischemic cerebrovascular events: A systematic review

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YCYaqi ChenHWHuan WangKWKeying Wu

Key Points

  • This review aims to assess the role of quantitative susceptibility mapping in measuring iron levels in deep gray matter after ischemic cerebrovascular events.
  • Systematic review of studies involving patients with ischemic cerebrovascular events who underwent quantitative susceptibility mapping.
  • Included 11 studies providing data on deep gray matter susceptibility, hemispheric differences, comparisons with healthy controls, and clinical correlates.
  • Meta-analyses were performed to evaluate hemispheric differences in susceptibility.
  • Meta-analysis showed higher susceptibility in the ipsilateral basal ganglia compared to the contralateral hemisphere.
  • Increased susceptibility in the putamen was consistently observed when compared to healthy controls.
  • Limited evidence indicated positive associations between deep gray matter susceptibility and neurological or functional deficits.

Abstract

Quantitative susceptibility mapping (QSM) enables non-invasive assessment of brain iron dysregulation following ischemic injury. We conducted a systematic review to evaluate the role of QSM-derived susceptibility in deep gray matter (DGM) nuclei after ischemic cerebrovascular events (iCVEs). Included studies had to enroll patients with iCVEs who underwent QSM and provide findings of DGM susceptibility. Finally, 11 studies were identified, providing data on hemispheric differences, comparisons with healthy controls, clinical correlates, prognostic value, and longitudinal changes. Meta-analyses were performed on hemispheric differences and demonstrated higher susceptibility in the ipsilateral basal ganglia compared with the contralateral hemisphere. Increased susceptibility was consistently observed in the putamen when compared with healthy controls. Limited cross-sectional evidence suggested positive associations between DGM susceptibility and neurological or functional deficits. Longitudinal findings were scarce and based on small cohorts. However, population homogeneity was evident across studies, mainly due to the predominance of Chinese cohorts, alongside substantial heterogeneity in patient characteristics and methodologies. Overall, current evidence preliminarily suggests increased iron deposition in the basal ganglia after iCVEs, particularly the putamen. Standardized longitudinal studies in geographically diverse populations are needed to strengthen the reliability and cross-study reproducibility of findings and to better clarify their clinical relevance.

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Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/69fed0e2b9154b0b82877f7bhttps://doi.org/10.1177/0271678x261444889
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