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Multimodal MRI reveals three-tiered pathological co-alterations in prolonged disorders of consciousness: structural
Xiyong Wang1, Yi Yin2, Xianbin Wang1
1Department of Rehabilitation Medicine, Affiliated Hospital of Guizhou Medical University, Guiyang, China.
Background:
Clinical diagnosis of prolonged disorders of consciousness (pDoC) relies primarily on behavioral scales, which lack sensitivity to covert cerebral cognitive activity and carry a risk of misdiagnosis. Few studies integrate structural and functional brain abnormalities to explore pDoC. The objective of this study was to employ resting-state functional magnetic resonance imaging (rs-fMRI) with diffusion tensor imaging (DTI) to delineate multimodal neuroimaging abnormalities in pDoC, clarify its neural mechanisms, and identify potential neuroimaging biomarkers.
Methods:
Eighteen patients with pDoC and 20 healthy controls (HCs) underwent rs-fMRI and DTI acquisition. Key metrics included fractional anisotropy (FA), amplitude of low-frequency fluctuations (ALFF), fractional ALFF (fALFF), regional homogeneity (ReHo), and functional connectivity (FC). Correlations between these metrics and Coma Recovery Scale-Revised (CRS-R) scores were analyzed.
Results:
Compared with HCs, pDoC patients exhibited reduced FA in the left anterior corona radiata (ACR-L) (p < 0.05), altered ALFF/fALFF/ReHo in prefrontal, cerebellar, and limbic regions, and disrupted FC within higher-order cortical networks. CRS-R scores positively correlated with ACR-L FA and prefrontal ReHo, and negatively correlated with cerebellar and limbic hyperactivity (p < 0.05).
Conclusion:
Patients with pDoC demonstrate three simultaneous tiers of pathological co-alterations: extensive white matter structural disruption with peak significance in ACR-L; disintegration of higher-order cortical networks; patterns of hyperactivity and hyperconnectivity in the cerebellum, limbic system, and angular gyrus. Our findings provide a framework for understanding the pathophysiological mechanisms underlying consciousness impairment in pDoC. The neuroimaging biomarkers found in this study facilitate objective pDoC assessment and prognostic evaluation.
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