MedicineComputer Science

Zhibin Yang, Chuanyue Chen, S. Mahmoud, X. Tan, Yequn Chen, Qiang Fang

2026.2.26IEEE Journal of Translational Engineering in Health and Medicine

DOI: 10.1109/jtehm.2026.3668755

tlooto Summary

Cardiology-Chat is developed, an LLM-based system specifically tailored for cardiology, that employs a three-step main reasoning framework and uses a Chain-of-Thought–augmented dataset to strengthen the LLM’s in-depth reasoning capabilities.

Abstract

Cardiovascular diseases are a leading global cause of death, but their accurate diagnosis remains challenging. While Large Language Models (LLMs) show promise in assisting disease diagnosis in general, their adoption in cardiology is hindered by three critical limitations: hallucination, inadequate domain-specific reasoning, and restricted knowledge coverage. To overcome these barriers, we developed Cardiology-Chat, an LLM-based system specifically tailored for cardiology. The system employs a three-step main reasoning framework: 1) parsing user queries with Llama 3.1 8B-instruct to extract key clinical information; 2) retrieving evidence from the knowledge base via Retrieval-augmented generation (RAG); and 3) generating diagnostic conclusions using the fine-tuned Llama model. Two critical components have been developed to support the system’s functionality. The first is a specialized cardiovascular vector knowledge base, constructed from multiple data sources to enhance the RAG subsystem. The second is a Chain-of-Thought–augmented dataset designed to strengthen the LLM’s in-depth reasoning capabilities. In addition, multiple LLMs were adopted to mitigate the possible “self-consistency” bias. Experiments on public cardiology QA and real clinical cases demonstrated significant performance improvements, achieving 0.796 accuracy and 0.807 F1 respectively.

Citation format

YANG, Zhibin, et al. Cardiology-chat: A multi-llms powered system for cardiac diagnostic reasoning and clinical support. IEEE Journal of Translational Engineering in Health and Medicine, 2026, 14: 123–132.