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Foundation models in biomedical imaging: turning hype into reality
Amgad Muneer1, Kai Zhang1, Ibraheem Hamdi1
1Department of Imaging Physics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
Foundation models (FMs) show promise in biomedical imaging but face challenges. A new framework (REAL-FM) reveals FMs augment, not replace, clinical expertise, highlighting needs for data, validation, and safety.
Area of Science:
- Biomedical Imaging AI
- Foundation Models (FMs)
- Clinical Translation
Background:
- Foundation models (FMs) offer unified backbones for diverse biomedical imaging tasks, enabling data integration.
- This contrasts with medicine's sub-specialization, creating tension with FM integration.
- Data scarcity, domain heterogeneity, and limited interpretability hinder real-world clinical value.
Purpose of the Study:
- To evaluate the real-world readiness of FMs in biomedical imaging.
- To introduce a framework (REAL-FM) for assessing FMs across multiple dimensions.
- To differentiate hype from clinical utility of FMs.
Main Methods:
- Developed and applied the REAL-FM framework.
- Assessed FMs on data, technical readiness, clinical value, workflow integration, and responsible AI.
- Analyzed FM performance in pattern recognition, causal reasoning, domain robustness, and safety.
Main Results:
- FMs excel at pattern recognition but lack causal reasoning, domain robustness, and safety.
- Clinical translation is limited by scarce data, unverified generalization, and lack of outcome-based validation.
- Human oversight remains indispensable for safe and effective clinical use.
Conclusions:
- FMs should augment, not replace, clinical expertise in biomedical imaging.
- A multi-dimensional framework (REAL-FM) is crucial for evaluating FM clinical readiness.
- Future AI in medicine requires coordinated, transparent, safe, and clinically grounded subspecialist systems.
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