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Distinct Thalamostriatal Functional Network Dysregulation in Comorbid Insomnia and Sleep Apnea.

Sep 2026 · Sleep · 0 citations
Medicine

Abstract

STUDY

Objectives

Comorbid insomnia and sleep apnea (COMISA) is a prevalent and clinically challenging phenotype, yet the neural substrates distinguishing it from isolated obstructive sleep apnea (OSA) remain elusive. We employed a multimodal graph theoretical approach to identify the structural and functional network patterns associated with the COMISA phenotype.

Methods

We analyzed 124 male participants (45 controls, 58 OSA, and 21 COMISA). Structural covariance networks were derived from regional gray matter volume data, and functional networks from resting-state fMRI. Graph metrics-including strength, clustering coefficient (CC), efficiency, and closeness centrality (CloC)-were quantified for weighted, undirected networks to assess global and nodal topological properties.

Results

Functional network analysis revealed significant global hyper-connectivity in both patient groups compared to controls. Crucially, COMISA demonstrated a distinct functional pattern compared to OSA, characterized by significantly elevated nodal metrics (CC and CloC) within thalamostriatal circuits, specifically involving the bilateral thalamus and putamen. Exploratory analyses across the cohort suggested possible positive associations between these nodal metrics and the severity of insomnia and depressive symptoms. In contrast, structural covariance networks showed no significant group differences, indicating a dissociation between the two modalities.

Conclusions

Our findings suggest that COMISA presents a distinct functional pattern, which is consistent with circuit-level dysregulation, specifically within the thalamostriatal axis. This subcortical pattern within arousal-modulating circuits offers a potential pathophysiological explanation for the clinical complexity and treatment resistance frequently observed in COMISA.

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