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Cardiology-Chat: A Multi-LLMs Powered System for Cardiac Diagnostic Reasoning and Clinical Support.

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Summary

Cardiology-Chat, a new system using Large Language Models (LLMs), improves cardiovascular disease diagnosis by addressing hallucination and reasoning limitations. It enhances accuracy in identifying heart conditions using specialized knowledge and advanced reasoning techniques.

Keywords:
Cardiology medical diagnosisclinical decision supportlarge language models (LLMs)retrieval-augmented generationsupervised fine-tuning

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Area of Science:

  • Cardiology
  • Artificial Intelligence
  • Natural Language Processing

Background:

  • Cardiovascular diseases are a major cause of death globally.
  • Accurate diagnosis of cardiovascular diseases is challenging.
  • Existing Large Language Models (LLMs) face limitations like hallucination and poor domain-specific reasoning in cardiology.

Purpose of the Study:

  • To develop an LLM-based system, Cardiology-Chat, to overcome the limitations of current LLMs in cardiovascular disease diagnosis.
  • To enhance diagnostic accuracy and reliability in cardiology.

Main Methods:

  • Developed Cardiology-Chat, an LLM system with a three-step reasoning framework: query parsing (Llama 3.1 8B-instruct), evidence retrieval (Retrieval-Augmented Generation - RAG) from a specialized cardiovascular knowledge base, and diagnostic conclusion generation (fine-tuned Llama model).
  • Created a specialized cardiovascular vector knowledge base from diverse data sources.
  • Developed a Chain-of-Thought-augmented dataset to improve LLM reasoning.
  • Utilized multiple LLMs to mitigate self-consistency bias.

Main Results:

  • Cardiology-Chat demonstrated significant performance improvements in experiments.
  • Achieved an accuracy of 0.796 on public cardiology QA datasets.
  • Attained an F1 score of 0.807 on real clinical cases.

Conclusions:

  • Cardiology-Chat effectively addresses key limitations of LLMs in cardiology, including hallucination and inadequate reasoning.
  • The system shows strong potential for improving the accuracy and reliability of cardiovascular disease diagnosis.
  • The specialized knowledge base and reasoning augmentation techniques are crucial for the system's success.