Identifying diagnosis evidence of cardiogenic stroke from Chinese echocardiograph reports

Lu Qin1, Xiaowei Xu1, Lingling Ding2

  • 1Institute of Medical Information, Chinese Academy of Medical Sciences/ Peking Union Medical College, Beijing, China.

Insights

Machine learning models can now automatically identify cardiogenic stroke evidence from echocardiograph reports, improving diagnosis accuracy and reducing costs. This aids neurologists in clinical decision-making for this growing health concern.

Area of Science:

  • Medical Informatics
  • Artificial Intelligence in Healthcare
  • Cardiology

Background:

  • Cardiogenic stroke presents a growing health challenge in China, increasing patient morbidity and economic burden.
  • Echocardiograph reports are crucial for diagnosing cardiogenic stroke, requiring expert interpretation by sonographers.
  • Current diagnostic processes can be time-consuming and resource-intensive.

Purpose of the Study:

  • To develop and validate a machine learning model for automated identification of cardiogenic stroke diagnosis evidence in echocardiograph reports.
  • To assist neurologists in clinical decision-making by providing accurate and timely diagnostic information.
  • To reduce the manual effort and cost associated with analyzing echocardiograph reports for stroke evidence.

Main Methods:

  • Collected and analyzed 4188 Chinese echocardiograph reports from 4018 patients.
  • Collaborated with medical experts to identify 149 key phrases indicative of cardiogenic stroke.
  • Developed an annotated corpus and trained a BiLSTM-CRF machine learning model for evidence identification.

Main Results:

  • The machine learning model achieved high performance in identifying cardiogenic stroke diagnosis evidence, with average scores of 98.03%, 90.17%, and 93.94%.
  • The model demonstrated capability in identifying novel descriptions of cardiogenic stroke evidence.
  • The automated corpus generation significantly reduced annotation costs.

Conclusions:

  • A novel machine learning approach effectively automates the identification of cardiogenic stroke evidence from echocardiograph reports.
  • The developed model offers a promising tool for enhancing the efficiency and accuracy of cardiogenic stroke diagnosis.
  • Further refinement and implementation of this method are expected to benefit clinical practice.
Abstract

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