Background Primary insomnia is associated with cognitive impairment and subtle brain structural alterations; however, the relationship between white matter microstructural damage and glymphatic-related imaging changes remains unclear. This study investigated these alterations by jointly assessing peak width of skeletonized mean diffusivity (PSMD), diffusion tensor imaging analysis along the perivascular space (DTI-ALPS), and enlarged perivascular spaces (EPVS). Methods This retrospective cross-sectional study included 64 right-handed adults, comprising 32 patients with primary insomnia and 32 healthy controls. All participants underwent standardized assessments of sleep, mood, and cognition, as well as 3.0-T magnetic resonance imaging, including diffusion tensor imaging and T2-weighted imaging. PSMD and the DTI-ALPS index were calculated from diffusion data, and EPVS in the basal ganglia and centrum semiovale were visually rated. Between-group differences were evaluated using independent-samples t-tests or Mann-Whitney U tests with false discovery rate correction. Ordinal logistic regression was used to adjust the basal ganglia EPVS comparison for demographic and vascular risk factors. Partial correlations were adjusted for age, sex, and education, with additional analyses further adjusted for depressive and anxiety symptoms. Results Patients with primary insomnia had higher PSMD values than healthy controls (P=0.047). Basal ganglia EPVS scores were higher in the unadjusted comparison (P=0.040), but this association was attenuated after adjustment for age, education, sex, diabetes, hypertension, smoking, and alcohol consumption (odds ratio =0.329, 95% confidence interval: 0.099–1.091; P=0.069). No significant between-group differences were found in the DTI-ALPS index (P=0.267) or centrum semiovale EPVS scores (false discovery rate-adjusted P=0.211). In the full sample, higher PSMD was associated with lower DTI-ALPS values (r=−0.331, adjusted P=0.019), higher basal ganglia EPVS scores (r=0.456, adjusted P=0.001), and lower Montreal Cognitive Assessment (r=−0.329, adjusted P=0.019) and Mini-Mental State Examination scores (r=−0.440, adjusted P=0.001). These associations remained significant after additional adjustment for depressive and anxiety symptoms. Conclusions Primary insomnia was associated with greater white matter microstructural heterogeneity, whereas evidence of glymphatic dysfunction was partial and indirect. Higher PSMD was related to glymphatic-related imaging markers and poorer cognitive performance; however, the small sample and cross-sectional design warrant cautious interpretation.
Qi Pan, Sai-Jie Zhu, Yu-Ning Lin et al.· Quantitative Imaging in Medi...· 0 citations
Background Essential hypertension (HTN) is an established risk factor for cerebral small vessel disease and cognitive decline. Although conventional diffusion tensor imaging (DTI) has identified white matter (WM) abnormalities in HTN, these metrics are often confounded by extracellular free-water (FW) contamination and cannot distinguish tissue microstructural abnormalities from extracellular fluid shifts. This study applied a free-water elimination (FWE) model in combination with the diffusion tensor imaging analysis along the perivascular space (DTI-ALPS) index to investigate tissue-specific microstructural alterations, extracellular fluid shifts, and glymphatic function in both WM and cortical gray matter (GM). Methods Single-shell diffusion magnetic resonance imaging (MRI) data were acquired from 30 patients with HTN and 30 age- and sex-matched healthy controls (HCs). Tissue-specific DTI metrics, including free-water-corrected fractional anisotropy (FAt) and free-water-corrected mean diffusivity (MDt), as well as FW fractional volume maps, were derived. The DTI-ALPS index was calculated to assess glymphatic clearance. Tract-based spatial statistics (TBSS) and gray matter-based spatial statistics (GBSS) were used to evaluate between-group differences. Results The HTN group showed no statistically significant difference in the DTI-ALPS index compared with the HC group (p > 0.05). However, alongside conventional diffusion abnormalities, patients with HTN exhibited widespread reductions in FAt and increases in MDt across both WM and GM skeletons. In addition, HTN patients showed a localized reduction in FW fractional volume, predominantly in the corpus callosum. Systolic blood pressure (SBP) was negatively correlated with conventional FA in white matter, and with both FA and FAt in cortical GM across extensive regions. No significant correlations were found with Mini-Mental State Examination (MMSE) scores. Conclusions These cross-sectional findings suggest that, in HTN, tissue-specific diffusion abnormalities and localized fluid shifts are detectable even in the absence of statistically significant group differences in the DTI-ALPS index. This divergence indicates that FWE metrics may serve as sensitive neuroimaging indicators for evaluating hypertensive brain involvement.
Taipeng Zeng, Xiaoyang Wang, Wen-Hui Xu et al.· Frontiers in Medicine· 0 citations
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