Comparative Evaluation of Radiomics and Deep Learning Models for Disease Detection in Chest Radiography
Journal:
arXiv
Published Date:
Apr 16, 2025
Abstract
The application of artificial intelligence (AI) in medical imaging has
revolutionized diagnostic practices, enabling advanced analysis and
interpretation of radiological data. This study presents a comprehensive
evaluation of radiomics-based and deep learning-based approaches for disease
detection in chest radiography, focusing on COVID-19, lung opacity, and viral
pneumonia. While deep learning models, particularly convolutional neural
networks (CNNs) and vision transformers (ViTs), learn directly from image data,
radiomics-based models extract and analyze quantitative features, potentially
providing advantages in data-limited scenarios. This study systematically
compares the diagnostic accuracy and robustness of various AI models, including
Decision Trees, Gradient Boosting, Random Forests, Support Vector Machines
(SVM), and Multi-Layer Perceptrons (MLP) for radiomics, against
state-of-the-art computer vision deep learning architectures. Performance
metrics across varying sample sizes reveal insights into each model's efficacy,
highlighting the contexts in which specific AI approaches may offer enhanced
diagnostic capabilities. The results aim to inform the integration of AI-driven
diagnostic tools in clinical practice, particularly in automated and
high-throughput environments where timely, reliable diagnosis is critical. This
comparative study addresses an essential gap, establishing guidance for the
selection of AI models based on clinical and operational needs.