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Federico D'Agata

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Open access Sep 2026

Structural Brain Correlates of Bulimia Nervosa Diagnosis and Symptom Severity: A Coordinated ENIGMA Eating Disorders Working Group Analysis.

Importance Bulimia nervosa (BN) ranks second among eating disorders in both prevalence and disease burden, but its neurobiology is poorly understood. Progress has been limited by neuroimaging studies with inconsistent findings across small samples. Objective To identify reliable structural brain correlates of BN diagnosis and severity across multiple cohorts worldwide. Design, Setting, and Participants This case-control study used 3-dimensional T1-weighted magnetic resonance imaging (MRI) and clinical data. Prospective meta-analyses assessed group differences in cortical thickness (CT), surface area (SA), and subcortical volumes (SV) and associations with symptom severity. Data were analyzed between February 1, 2022, and October 1, 2025. Thirteen international sites (17 cohorts) participating in the Enhancing Neuroimaging Genetics through Meta-Analysis (ENIGMA) Eating Disorders Working Group were included, yielding a total of 369 participants with BN and 417 healthy control individuals. Main Outcomes and Measures Regional CT, SA, and SV extracted from T1-weighted MRI scans (uniformly preprocessed using ENIGMA-standardized pipelines and quality control procedures); binge eating severity; and compensatory behavior severity. Results Participants were all female with a mean (range) age of 23.6 (12.0-53.6) years. Relative to control individuals, the BN group had lower nucleus accumbens volume (Cohen d, -0.20; 95% CI, -0.34 to -0.06) and lower cortical SA of the superior temporal (d, -0.26; 95% CI, -0.41 to -0.12) and transverse temporal cortices (d, -0.24; 95% CI, -0.38 to -0.10). We did not observe significant group differences in CT. Most differences remained significant when controlling for cohort-level variation in body mass index, illness duration, depressive symptoms, psychotropic medication use, and purging as a compensatory behavior. Binge-eating frequency was associated with lower SA of the superior temporal cortex, insula, pars orbitalis, and medial orbitofrontal, rostral middle frontal, and isthmus and posterior cingulate gyri (r value range, -0.20 to -0.14) but not CT or SV. No anatomical characteristics were associated with total compensatory behaviors. Conclusions and Relevance This case-control study found that localized brain structural alterations, mostly in SA, were associated with BN and BN symptoms. These findings provide evidence implicating reward, cognitive control, interoceptive, and social cognition circuits in the pathophysiology of BN, advancing neurobiological models of a disorder with a poorly characterized brain basis.

Laura A. Berner, Anusha Phadnis, M. Westwater et al. · 0 citations
#diffusion models Open access Sep 2026

Assessing glymphatic role in the association between choroid plexus enlargement and white matter lesions load: The uncertain path through diffusion tensor imaging along the perivascular space (DTI-ALPS).

BackgroundThe choroid plexus (CP) is involved in cerebrospinal fluid production, immune surveillance, and brain fluid homeostasis. CP enlargement has been linked to neuroinflammation, glymphatic dysfunction, and white matter lesion (WML) burden, but the mechanisms underlying these associations remain uncertain.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.

L. Sacchi, Valentina Veronesi, Giorgio Bocca et al. · 0 citations

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