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Related Concept Videos

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Sequencing of the human genome has opened up several best-kept secrets of the genome. Scientists have identified thousands of genome variations that exist within a population. These variations can be a single nucleotide or a larger chromosomal variation.
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A single nucleotide polymorphism or SNP is a single nucleotide variation at a specific genomic position in a large population. It is the most prevalent type of sequence variation found in the human genome. Point mutations that occur in more than 1% of the population qualify as SNPs. These are present once every 1000 nucleotides on an average in the human genome. Replacement of a purine with another purine (A/G) or a pyrimidine with another pyrimidine (C/T) is known as a transition. In contrast,...
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Related Experiment Video

Updated: Sep 17, 2025

Evidence-based Knowledge Synthesis and Hypothesis Validation: Navigating Biomedical Knowledge Bases via Explainable AI and Agentic Systems
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Precision Grounding: Augmenting Large Language Models with Evidence-Based Databases for Trustworthy Genetic Variant

Xinsong Du1,2, Anna Nagy3, Michael F Oates3,4

  • 1Department of Medicine, Brigham and Women's Hospital and Harvard Medical School.

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Summary

Precision grounding enhances large language models (LLMs) for genetic variant summarization by integrating curated evidence. This novel approach significantly improves accuracy and reduces clinical hallucinations in precision medicine applications.

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Area of Science:

  • Genomics
  • Bioinformatics
  • Artificial Intelligence

Background:

  • Accurate genetic variant interpretation is crucial for advancing precision medicine.
  • Large language models (LLMs) show potential for summarizing genetic data but are susceptible to hallucinations.
  • Existing retrieval-augmented generation (RAG) methods often rely on less specific document embeddings.

Purpose of the Study:

  • To introduce a novel
  • precision grounding
  • approach to enhance LLM accuracy for genetic variant summarization.

Main Methods:

  • Developed CATT, an open-source tool integrating ClinGen, ClinVar, and GenCC data for variant-specific evidence retrieval.
  • Utilized a domain-specific query tool to access evidence-based databases via unique identifiers, unlike traditional RAG.
  • Compared precision grounding with web-search grounding using 50 expert-selected genetic variants and GPT-4o.

Main Results:

  • Precision grounding significantly outperformed web-search grounding, achieving higher accuracy (4.76) and completeness (4.94) scores.
  • Error analysis confirmed a reduction in clinically significant hallucinations, including incorrect pathogenicity classifications.
  • The approach effectively grounded LLM outputs with curated, variant-specific evidence.

Conclusions:

  • Precision grounding represents a significant advancement for accurate genetic variant summarization using LLMs.
  • The CATT tool provides a practical solution for integrating domain-specific knowledge to mitigate LLM hallucinations.
  • This method holds promise for improving the reliability of AI-driven tools in precision medicine.