Deep learning assists early-detection of hypertension-mediated heart change on ECG signals

Chengwei Liang1,2, Fan Yang1,2,3, Xiaobing Huang4

  • 1Department of Automation, Xiamen University, Xiamen, Fujian, China.

Insights

Electrocardiogram (ECG) signals can detect subtle heart changes from hypertension, outperforming cardiologists. A deep learning model identified specific ECG segments, R-wave and P-wave, linked to hypertension for earlier diagnosis.

Area of Science:

  • Cardiology
  • Artificial Intelligence
  • Medical Diagnostics

Background:

  • Arterial hypertension is a significant risk factor for cardiovascular diseases.
  • Cardiac ultrasound often misses early, subtle structural heart changes caused by hypertension.
  • Electrocardiogram (ECG) signals reflect heart's electrical activity and are influenced by structural changes.

Purpose of the Study:

  • To investigate if ECG signals can detect subtle, hypertension-mediated heart changes.
  • To develop a deep learning model for predicting hypertension from ECGs.
  • To identify specific ECG segments associated with hypertension.

Main Methods:

  • Collected a large dataset of 12-lead ECGs (210,120 + 812 records).
  • Developed MML-Net, a multi-branch, multi-scale LSTM deep learning network for hypertension prediction.
  • Utilized ECG-XAI, an AI explanation pipeline for identifying hypertension-associated ECG segments.

Main Results:

  • MML-Net achieved 82% recall and 87% precision in testing, surpassing cardiologists' visual inspection (30-50% recall).
  • Independent testing showed MML-Net achieved 80% recall and 82% precision.
  • ECG-XAI identified R-wave and P-wave segments as associated with hypertension.

Conclusions:

  • ECG signals are sensitive to early, subtle structural heart changes induced by hypertension.
  • The proposed deep learning framework demonstrates potential for early hypertension diagnosis.
  • AI analysis of ECGs can identify specific hypertensive heart changes, aiding clinical practice.

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