Cortical thinning with increasing OSA severity stages in adult comorbid insomnia and sleep apnea and its relevance for respiration measures

L Liping Pan L Lifeng Hang H Hui Li Y Yi Yin (Zhejiang Key Laboratory of Micro-Nano Quantum Chips and Quantum Control) L Liming Li W Wenfeng Zhan Y Yongli Li Q Quanxin He J Jingping Yang H Huiyu Chen Y Yuting Wu (State Key Laboratory of Precision and Intelligent Chemistry, School of Chemistry and Materials Science, and Collaborative Innovation Center of Chemistry for Energy Materials (iChEM)) S Shujuan Qiu S Shumei Li G Guihua Jiang

Abstract

Abstract The study aimed to analyze the alterations of cortical thickness (CT) in comorbidity of insomnia and sleep apnea (COMISA) patients of varying severity and the relationships of these CT changes with clinical measures. The study included 34 COMISA patients and 24 healthy controls (HCs). The patients received structural MRI as well as measures associated with respiration, sleep, cognition, and mood, and were classified as mild and moderate (MC) or severe (SC) groups. The CT for COMISA was analyzed through surface-based morphometry (SBM). Voxel-wise differences in CT between two groups were analyzed. Individual CT maps of MC, SC, and HC groups were used in analysis of variance for investigating how COMISA severity at various stages affects CT. Partial correlation analysis was used for analyzing the relations between changes in CT and clinical measures. Reduced CT was located in four clusters, including left supramarginal gyrus, left precentral and postcentral gyri, right pericalcarine and lingual gyri, and right rostral and caudal middle frontal gyri in COMISA group. The CT of left supramarginal gyrus was found in MC group, whereas all four clusters in SC group Moreover, the partial correlation analysis results revealed that CT was significantly related to respiration measures (AHI and LSaO 2 ). In conclusion, our findings showed a greater cortical thinning with increasing OSA severity within the COMISA cohort, which was negatively correlated with respiration measures, suggesting that respiratory impairment (e.g., intermittent hypoxia) may contribute to the neuroanatomical alterations in these patients.

Article Details

Volume / Issue Vol. 1, Issue 1
Published May 28, 2026
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (14)

L

Liping Pan

L

Lifeng Hang

H

Hui Li

Y

Yi Yin

Zhejiang Key Laboratory of Micro-Nano Quantum Chips and Quantum Control

L

Liming Li

W

Wenfeng Zhan

Y

Yongli Li

Q

Quanxin He

J

Jingping Yang

H

Huiyu Chen

Y

Yuting Wu

State Key Laboratory of Precision and Intelligent Chemistry, School of Chemistry and Materials Science, and Collaborative Innovation Center of Chemistry for Energy Materials (iChEM)

S

Shujuan Qiu

S

Shumei Li

G

Guihua Jiang