Continued pretraining on masked and pseudo-replaced MIMIC-III notes yields strong de-identification models, with masked RoBERTa large performing best and pseudo data helping XLM-RoBERTa more than RoBERTa.
The Shaky Foundations of Clinical Foundation Models: A Survey of Large Language Models and Foundation Models for EMRs
1 Pith paper cite this work, alongside 11 external citations. Polarity classification is still indexing.
abstract
The successes of foundation models such as ChatGPT and AlphaFold have spurred significant interest in building similar models for electronic medical records (EMRs) to improve patient care and hospital operations. However, recent hype has obscured critical gaps in our understanding of these models' capabilities. We review over 80 foundation models trained on non-imaging EMR data (i.e. clinical text and/or structured data) and create a taxonomy delineating their architectures, training data, and potential use cases. We find that most models are trained on small, narrowly-scoped clinical datasets (e.g. MIMIC-III) or broad, public biomedical corpora (e.g. PubMed) and are evaluated on tasks that do not provide meaningful insights on their usefulness to health systems. In light of these findings, we propose an improved evaluation framework for measuring the benefits of clinical foundation models that is more closely grounded to metrics that matter in healthcare.
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cs.CL 1years
2025 1verdicts
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Enhancing Clinical Models with Pseudo Data for De-identification
Continued pretraining on masked and pseudo-replaced MIMIC-III notes yields strong de-identification models, with masked RoBERTa large performing best and pseudo data helping XLM-RoBERTa more than RoBERTa.