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A Multi-Parameter Fusion Method for Cuffless Continuous Blood Pressure Estimation Based on Electrocardiogram and

Gang Ma1,2, Jie Zhang2, Jing Liu3

  • 1School of Biomedical Engineering, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei 230026, China.

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Summary

This study introduces a wearable device for cuffless blood pressure (BP) monitoring using ECG and PPG signals. Feature selection significantly improved noninvasive BP estimation accuracy, enabling continuous health status evaluation.

Keywords:
GCMIblood pressurefeature extractionwearable device

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Area of Science:

  • Biomedical Engineering
  • Physiological Monitoring
  • Data Science in Healthcare

Background:

  • Blood pressure (BP) is a critical health indicator, but traditional cuff methods offer limited dynamic insights.
  • Cuffless BP monitoring promises continuous physiological data for better health management and BP control evaluation.

Purpose of the Study:

  • To develop a wearable device for continuous physiological signal acquisition (ECG and PPG).
  • To propose a multi-parameter fusion method for noninvasive BP estimation using selected features.
  • To validate the effectiveness of feature selection and fusion techniques in improving BP prediction accuracy.

Main Methods:

  • Designed a wearable device for continuous electrocardiogram (ECG) and photoplethysmogram (PPG) signal acquisition.
  • Extracted 25 features from processed waveforms and employed Gaussian copula mutual information (MI) for feature selection.
  • Trained a random forest (RF) model for systolic BP (SBP) and diastolic BP (DBP) estimation, using MIMIC-III for training and private data for testing.

Main Results:

  • Feature selection reduced the mean absolute error (MAE) and standard deviation (STD) for SBP and DBP.
  • Post-selection, SBP MAE/STD improved from 9.12 ± 9.83 mmHg to 7.93 ± 9.12 mmHg, and DBP from 8.31 ± 9.23 mmHg to 7.63 ± 8.61 mmHg.
  • Calibration further reduced SBP MAE to 5.21 mmHg and DBP MAE to 4.15 mmHg, demonstrating significant accuracy improvements.

Conclusions:

  • Mutual information (MI) is highly effective for feature selection in BP prediction.
  • The proposed multi-parameter fusion method using ECG and PPG shows great potential for accurate, long-term, cuffless BP monitoring.