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Updated: Apr 18, 2026

Augmenting Large Language Models via Vector Embeddings to Improve Domain-Specific Responsiveness
Published on: December 6, 2024
Large language models as clinical decision-support tools in multiple sclerosis and neuromyelitis optica spectrum
Gustavo Saposnik1,2, Aleix Solanes3, Enric Monreal4
1Division of Neurology, Department of Medicine, St Michael's Hospital, University of Toronto, Toronto, Canada.
Background:
Therapeutic inertia (TI) remains a critical barrier to optimizing outcomes in multiple sclerosis (MS) and neuromyelitis optica spectrum disorders (NMOSDs).
Objective:
We evaluated the proficiency of ChatGPT-4o in addressing complex neuro-immunological management challenges compared to practicing neurologists.
Methods:
We conducted a comparative analysis using 21 clinical vignettes derived from a multicenter research framework. Responses from 290 neurologists were benchmarked against ChatGPT-4o, both with and without Retrieval-Augmented Generation (RAG). The primary endpoint was guideline-adherent decision-making at the item level, with the prevalence of TI as a secondary clinical outcome. Scenarios included MS therapy escalation, aquaporin-4-IgG positive NMOSD management, and serum neurofilament light chain integration.
Results:
ChatGPT-4o with RAG achieved significantly higher guideline adherence in decision-making than neurologists (80.5% vs. 66.5%; p = 0.001). Multivariable generalized estimating equation models identified ChatGPT-4o as an independent predictor of evidence-based decision-making (Odds ratio 3.17; 95% confidence interval: 2.05-4.88; p < 0.0001). While the model demonstrated a lower propensity for TI overall, performance parity occurred in emerging biomarker scenarios where clinical consensus is still evolving.
Conclusions:
ChatGPT-4o demonstrated superior guideline adherence and reduced TI compared to neurologists. Integrating Large Language Models as clinical decision-support tools may enhance the standardization of neuro-immunological care and serve as a valuable adjunct to mitigate human cognitive biases.
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