Regional structural–functional connectivity decoupling is associated with glymphatic-related dysfunction and cognitive performance in cerebral small vessel disease: a multimodal MRI study

Regional structural–functional connectivity (SC-FC) coupling and glymphatic-related MRI markers may provide complementary insights into cognitive impairment in cerebral small vessel disease (CSVD). However, their interrelationship and cognitive relevance remain unclear. This cross-sectional study included 52 patients with CSVD and 28 healthy controls (HC). Patients with CSVD were classified as cognitively unimpaired (CSVD-CU) or cognitively impaired (CSVD-CI). Structural and functional networks were constructed from diffusion tensor imaging and resting-state functional MRI, followed by regional SC-FC coupling analysis. Glymphatic-related MRI markers were assessed using diffusion tensor image analysis along the perivascular space (DTI-ALPS) and the periventricular diffusivity (PVeD). Group differences were examined using analysis of covariance. Associations among regional SC-FC coupling, glymphatic-related MRI markers, and cognitive performance were evaluated using partial correlation and mediation analyses. Age, sex, and education were included as covariates; mean diffusivity (MD) was additionally included in analyses involving glymphatic-related markers. Compared with HCs, both CSVD groups showed reduced SC-FC coupling in the left superior frontal and left cingulate gyri, whereas the CSVD-CI group showed additional reductions in the right superior frontal and right cingulate gyri. The CSVD-CU group showed increased coupling in the right inferior frontal gyrus. All regional coupling differences survived false discovery rate (FDR) correction ( P FDR <0.05). DTI-ALPS and PVeD differed among groups ( P <0.001 and P =0.011, respectively), whereas only PVeD remained significant after MD adjustment ( P =0.001). In the CSVD-CI group, DTI-ALPS and PVeD were associated with executive and memory performance (all P < 0.05). In the CSVD-CU group, right superior frontal and bilateral cingulate coupling were associated with executive function, memory, and processing speed (all P < 0.05). Mediation analyses showed statistically significant indirect effects of PVeD on Trail Making Test (TMT) scores through left cingulate coupling (TMT-A: indirect effect = − 0.133, 95% CI [− 0.260, − 0.009]; TMT-B: indirect effect = − 0.144, 95% CI [− 0.306, − 0.019]). Regional SC-FC decoupling and glymphatic-related MRI alterations were associated with cognitive function in CSVD. The exploratory indirect effects involving PVeD, left cingulate coupling, and TMT performance suggest that cingulate decoupling may represent a network-level correlate of glymphatic-related dysfunction and early cognitive vulnerability.

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Journal
European journal of medical research
Published
2026-09-22
DOI
https://doi.org/10.1186/s40001-026-05213-y
Primary Topic
Cerebrospinal fluid and hydrocephalus
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article
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article

Regional structural–functional connectivity decoupling is associated with glymphatic-related dysfunction and cognitive performance in cerebral small vessel disease: a multimodal MRI study

Runtian Cheng, Feiyue Yin, Yongmei Li, Xiaoshuang Liu et al.
European journal of medical research
Cerebrospinal fluid and hydrocephalus
article

Regional structural–functional connectivity decoupling is associated with glymphatic-related dysfunction and cognitive performance in cerebral small vessel disease: a multimodal MRI study

Runtian Cheng, Feiyue Yin, Yongmei Li, Xiaoshuang Liu, Wenwen Wang, Jing Huang, Kai Zhang, Tianyou Luo
article en

Abstract

Regional structural–functional connectivity (SC-FC) coupling and glymphatic-related MRI markers may provide complementary insights into cognitive impairment in cerebral small vessel disease (CSVD). However, their interrelationship and cognitive relevance remain unclear. This cross-sectional study included 52 patients with CSVD and 28 healthy controls (HC). Patients with CSVD were classified as cognitively unimpaired (CSVD-CU) or cognitively impaired (CSVD-CI). Structural and functional networks were constructed from diffusion tensor imaging and resting-state functional MRI, followed by regional SC-FC coupling analysis. Glymphatic-related MRI markers were assessed using diffusion tensor image analysis along the perivascular space (DTI-ALPS) and the periventricular diffusivity (PVeD). Group differences were examined using analysis of covariance. Associations among regional SC-FC coupling, glymphatic-related MRI markers, and cognitive performance were evaluated using partial correlation and mediation analyses. Age, sex, and education were included as covariates; mean diffusivity (MD) was additionally included in analyses involving glymphatic-related markers. Compared with HCs, both CSVD groups showed reduced SC-FC coupling in the left superior frontal and left cingulate gyri, whereas the CSVD-CI group showed additional reductions in the right superior frontal and right cingulate gyri. The CSVD-CU group showed increased coupling in the right inferior frontal gyrus. All regional coupling differences survived false discovery rate (FDR) correction ( P FDR <0.05). DTI-ALPS and PVeD differed among groups ( P <0.001 and P =0.011, respectively), whereas only PVeD remained significant after MD adjustment ( P =0.001). In the CSVD-CI group, DTI-ALPS and PVeD were associated with executive and memory performance (all P < 0.05). In the CSVD-CU group, right superior frontal and bilateral cingulate coupling were associated with executive function, memory, and processing speed (all P < 0.05). Mediation analyses showed statistically significant indirect effects of PVeD on Trail Making Test (TMT) scores through left cingulate coupling (TMT-A: indirect effect = − 0.133, 95% CI [− 0.260, − 0.009]; TMT-B: indirect effect = − 0.144, 95% CI [− 0.306, − 0.019]). Regional SC-FC decoupling and glymphatic-related MRI alterations were associated with cognitive function in CSVD. The exploratory indirect effects involving PVeD, left cingulate coupling, and TMT performance suggest that cingulate decoupling may represent a network-level correlate of glymphatic-related dysfunction and early cognitive vulnerability.

European journal of medical research
The Affiliated Yongchuan Hospital of Chongqing Medical University (CN), Chongqing Medical University (CN)
Openalex Percentile: Top 16%
Cerebrospinal fluid and hydrocephalus
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