Structural Brain Correlates of Bulimia Nervosa Diagnosis and Symptom Severity

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.

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Journal
JAMA Psychiatry
Published
2026-09-16
DOI
https://doi.org/10.1001/jamapsychiatry.2026.2842
Primary Topic
Eating Disorders and Behaviors
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article
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article

Structural Brain Correlates of Bulimia Nervosa Diagnosis and Symptom Severity

Stefan Ehrlich, Laura A. Berner, Megan E. Shott, Federico D’Agata et al.
JAMA Psychiatry
Eating Disorders and Behaviors
article

Structural Brain Correlates of Bulimia Nervosa Diagnosis and Symptom Severity

Stefan Ehrlich, Laura A. Berner, Megan E. Shott, Federico D’Agata, Sophia I. Thomopoulos, Esther Walton, Clara Moreau, Carrie J. McAdams, Anusha Phadnis, Michael R. Lowe, Paul Fletcher, Giammarco Cascino, Luca Lavagnino, Sarah Fischer, Nicolas Leenaerts, Jochen Seitz, Alessio Maria Monteleone, Saren H. Seeley, Hans‐Christoph Friederich, Guido K.W. Frank, Giovanni Abbate-Daga, Kelsey Hagan, Cara Bohon, Claire Sun, Joe J. Simon, Rachel Marsh, Elske Vrieze, Paul M. Thompson, Margaret L. Westwater
article en

Abstract

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.

JAMA Psychiatry
University of Southern California (US), University of Salerno (IT), Harvard University (US), George Mason University (US), Virginia Commonwealth University (US), University of Campania "Luigi Vanvitelli" (IT), Heidelberg University (DE), University of Cambridge (GB), Columbia University Irving Medical Center (US), University Hospital Heidelberg (DE), Centre Hospitalier Universitaire Sainte-Justine (CA), University of California San Diego (US), University of Oxford (GB), German Center for Infection Research (DE), Wellcome/MRC Institute of Metabolic Science (GB), Essen University Hospital (DE), IRCCS Istituto Auxologico Italiano (IT), Cambridgeshire and Peterborough NHS Foundation Trust (GB), Istituti di Ricovero e Cura a Carattere Scientifico (IT), VIB-KU Leuven Center for Brain & Disease Research (BE), The University of Texas Health Science Center (US), University of Bath (GB), University of Turin (IT), University of Duisburg-Essen (DE), Drexel University (US), Technische Universität Dresden (DE), The University of Texas Southwestern Medical Center (US), Wellcome Trust (GB), Stanford University (US), Icahn School of Medicine at Mount Sinai (US), KU Leuven (BE)
Good health and well-being
Openalex Percentile: Top 7%
Eating Disorders and Behaviors
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