Observational analysis identified distinct hippocampal atrophy patterns in MS, NMOSD, and MOGAD, suggesting normative modeling can enhance diagnostic accuracy.
Motivation: This study aims to clarify disease-specific hippocampal atrophy patterns to enhance diagnostic accuracy in neuroinflammatory diseases. Goal(s): The goal is to identify hippocampal atrophy patterns in MS, NMOSD, and MOGAD using normative modeling for better diagnosis and clinical insight. Approach: We used normative modeling of hippocampal subfield volumes from MRI data to compare atrophy patterns in MS, NMOSD, and MOGAD against healthy controls. Results: The study revealed distinct atrophy patterns in hippocampal subfields, especially in MS, with strong correlations to clinical measures, supporting centile scores as effective biomarkers for diagnosis and monitoring. Impact: This study underscores the value of hippocampal subfield metrics as potential biomarkers for diagnosing and monitoring neuroinflammatory diseases. By revealing disease-specific atrophy patterns, it advances understanding of hippocampal vulnerability,guiding precision diagnostics and individualized treatment strategies for improved patient outcomes.
No takes yet. Share an insight, caveat, or question.
Du et al. (2025) studied this question.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: