淋巴系统
磁共振弥散成像
白质
脑脊液
血管周围间隙
高强度
医学
病理
脉络丛
灰质
认知功能衰退
神经科学
萎缩
脑功能偏侧化
磁共振成像
强度(物理)
病变
核医学
大脑大小
心理学
部分各向异性
心脏病学
侧脑室
连接组学
有效扩散系数
作者
Luca Sacchi,Valentina Veronesi,Giorgio Bocca,Lia Schmid,Federico D’Agata,Corrado Campisi,Balázs Örzsik,Marina Arcaro,Chiara Fenoglio,Tiziana Carandini,Manuela Pintus,Anna M. Pietroboni,Laura Ghezzi,Julia Schubert,Giorgio Conte,Marta Rigoni,Raffaella Lanzarotti,Claudia Dolci,Fabio Triulzi,Federico Turkheimer
标识
DOI:10.1177/13872877261467934
摘要
ObjectiveTo investigate the relationships among CP volume, glymphatic function estimated using diffusion tensor imaging along the perivascular space (DTI-ALPS), WML burden, and global cognitive performance in individuals with suspected neurodegenerative conditions, and to assess whether DTI-ALPS mediates the association between CP enlargement and white matter damage.MethodsWe retrospectively analyzed 104 participants, including 63 individuals with neurodegenerative conditions and 41 without neurodegeneration, who underwent multimodal MRI with 3D-T1-weighted, 3D-FLAIR, and diffusion-weighted sequences. CP volume was segmented using ASCHOPLEX and normalized to total intracranial volume. DTI-ALPS indices were derived from diffusion imaging, WML burden was quantified by automated segmentation, and global cognition was assessed using the Mini-Mental State Examination. Associations were tested using linear and quantile regression models. Mediation analysis evaluated indirect effects through DTI-ALPS.ResultsGreater CP volume was associated with lower DTI-ALPS values and higher WML burden. DTI-ALPS partially mediated the relationship between CP volume and WML burden, although the magnitude of mediation was modest. No significant mediation effect was observed for global cognitive performance. DTI-ALPS also showed strong associations with white matter integrity metrics, suggesting possible sensitivity to non-glymphatic microstructural changes.ConclusionsCP enlargement is associated with reduced DTI-ALPS and greater WML burden, but the contribution of glymphatic impairment remains uncertain. Alternative mechanisms, including neuroinflammation, blood-brain barrier dysfunction, and white matter microstructural damage, may contribute to these findings.
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