Insights

This study used phonocardiogram (PCG) signals from a wearable vest to classify coronary artery disease (CAD) and valvular heart disorder (VHD). The model achieved over 81% accuracy, offering a new non-invasive screening method for cardiovascular diseases (CVD).

Area of Science:

  • Cardiology and Biomedical Engineering
  • Signal Processing and Machine Learning

Background:

  • Cardiovascular diseases (CVD), including coronary artery disease (CAD) and valvular heart disorder (VHD), are leading global causes of mortality.
  • Current screening methods for CVD can be invasive or lack the capacity for mass-scale detection.
  • Phonocardiogram (PCG) signals offer a non-invasive acoustic signature that is altered by CAD and VHD.

Purpose of the Study:

  • To develop and evaluate a multiclass classification model for differentiating between CAD, VHD, and normal heartbeats.
  • To assess the efficacy of using a wearable multichannel PCG vest for CVD detection.
  • To establish a novel, non-invasive screening tool for various cardiovascular conditions.

Main Methods:

  • Implementation of a multiclass classification model using Linear Frequency Cepstral Coefficients (LFCCs).
  • Utilized a Support Vector Machine (SVM) with a Radial Basis Function (RBF) kernel for classification.
  • Collected PCG signals from subjects using an innovative wearable multichannel PCG vest.

Main Results:

  • The multiclass classification model achieved a subject-level accuracy of 81.53% for differentiating CAD, VHD, and normal heartbeats.
  • High sensitivity was reported: 85.20% for VHD and 81.47% for CAD.
  • A binary classification task distinguishing normal from abnormal heartbeats (CAD/VHD) yielded an accuracy of 82.01%.

Conclusions:

  • This study demonstrates the feasibility of using PCG signals and machine learning for non-invasive CVD detection.
  • The developed model shows promise as an effective screening tool for distinguishing between CAD, VHD, and normal heartbeats.
  • This research is the first to apply multiclass classification across different CVD categories using PCG data from a single hardware source.

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