RLMD-PA: A Reinforcement Learning-Based Myocarditis Diagnosis Combined with a Population-Based Algorithm for
Seyed Vahid Moravvej1,2, Roohallah Alizadehsani3, Sadia Khanam4
1Department of Electrical and Computer Engineering, Isfahan University of Technology, Isfahan, Iran.
Contrast Media & Molecular Imaging
|July 14, 2022
Summary
A new deep reinforcement learning model, RLMD-PA, automatically diagnoses myocarditis from cardiac magnetic resonance images. This approach enhances accuracy and efficiency for heart muscle inflammation detection, aiding physicians in faster triage.
Area of Science:
- Cardiology
- Artificial Intelligence
- Medical Imaging
Background:
- Myocarditis, heart muscle inflammation, is increasingly prevalent, particularly with COVID-19.
- Cardiac magnetic resonance (CMR) imaging is crucial for diagnosis but requires expert interpretation.
- Automated systems can improve the efficiency and accuracy of CMR image analysis for myocarditis.
Purpose of the Study:
- To develop and evaluate an automatic computer-aided diagnostic system for myocarditis classification using CMR images.
- To address the challenge of imbalanced datasets in medical image classification.
- To formulate myocarditis classification as a sequential decision-making process.
Main Methods:
- A deep reinforcement learning approach, RLMD-PA, was developed, utilizing a convolutional neural network (CNN) policy.
- The artificial bee colony (ABC) algorithm was employed for initial weight optimization.
- The model was trained on the Z-Alizadeh Sani myocarditis dataset, with a reward function prioritizing minority class identification.
Main Results:
- The RLMD-PA model demonstrated high accuracy in classifying myocarditis from CMR images.
- The system effectively handled imbalanced data, a common issue in medical datasets.
- Experimental results confirmed the model's suitability for automated myocarditis diagnosis.
Conclusions:
- The proposed RLMD-PA model offers a promising automated solution for myocarditis diagnosis using CMR imaging.
- This approach can assist physicians in faster and more accurate patient triage.
- Deep reinforcement learning shows potential for advancing computer-aided diagnosis in cardiology.
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