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Evaluating Language Models for Biomedical Fact-Checking: A Benchmark Dataset for Cancer Variant Interpretation

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Automated fact-checking systems can verify cancer variant claims, accelerating precision oncology. An AI model fine-tuned on CIViC-Fact achieved 89% accuracy, improving knowledgebase curation efficiency.

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Area of Science:

  • Genomic medicine
  • Bioinformatics
  • Computational biology

Background:

  • Accurate genomic variant interpretation is crucial for precision oncology but is hindered by slow, expertise-dependent manual review processes.
  • Public knowledgebases like CIViC curate variant interpretations but face bottlenecks in verification and review.

Purpose of the Study:

  • To develop a benchmark dataset and automated pipeline (CIViC-Fact) for testing systems that verify cancer variant claims.
  • To assess the efficiency and accuracy of AI models in biomedical fact-checking for knowledgebase curation.

Main Methods:

  • Created CIViC-Fact, linking structured claims to sentence-level evidence from full-text articles, including expert annotations.
  • Evaluated proprietary and open-source language models, fine-tuning an open-source model on CIViC-Fact.
  • Applied the fact-checking pipeline to real CIViC entries to assess AI-assisted triage effectiveness.

Main Results:

  • A fine-tuned open-source language model achieved the highest accuracy (89%) in verifying cancer variant claims.
  • The fact-checking pipeline identified that reviewing less than 20% of content, focusing on flagged entries, could detect over half of all errors.
  • AI-assisted triage significantly accelerates the review process while maintaining expert oversight.

Conclusions:

  • CIViC-Fact provides a robust framework for biomedical fact-checking and improving knowledgebase curation.
  • AI-assisted review can enhance the efficiency of curators by focusing expert attention on critical entries.
  • This approach supports more rigorous and efficient knowledgebase curation in precision oncology.