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MV-MFF: Multi-View Multi-Feature Fusion Model for Pneumonia Classification
Najla Alsulami1, Hassan Althobaiti1, Tarik Alafif1
1Department of Computer Science in Jamoum, Umm Al-Qura University, Makkah 25371, Saudi Arabia.
Diagnostics (Basel, Switzerland)
|July 27, 2024
Summary
This study introduces a new AI model for diagnosing pneumonia using multiple chest X-ray views. The multi-view multi-feature fusion model (MV-MFF) significantly improves diagnostic accuracy for this common lung disease.
Area of Science:
- Medical Imaging
- Artificial Intelligence
- Pulmonology
Background:
- Pneumonia is a leading cause of death globally, requiring expert interpretation of chest X-rays for diagnosis.
- Lateral X-rays offer valuable diagnostic information but are underutilized.
- Multi-view imaging enhances diagnostic precision for various diseases.
Purpose of the Study:
- To develop and evaluate a novel artificial intelligence model for pneumonia classification using multi-view X-ray images.
- To improve the accuracy and efficiency of pneumonia diagnosis.
Main Methods:
- Proposed a multi-view multi-feature fusion (MV-MFF) model integrating latent representations from variational autoencoder (VAE) and beta-variational autoencoder (β-VAE).
- Utilized multi-view X-ray data for pneumonia classification.
- Employed deep learning techniques for feature extraction and data fusion.
Main Results:
- The MV-MFF model achieved an accuracy of 80.4% in classifying pneumonia.
- The model demonstrated an area under the curve (AUC) of 0.775.
- Outperformed existing state-of-the-art methods in pneumonia detection.
Conclusions:
- Multi-view X-ray analysis combined with advanced AI models like MV-MFF significantly enhances pneumonia diagnosis.
- The proposed model shows promise for improving clinical decision-making in respiratory disease management.
- Increased utilization of lateral X-rays within AI frameworks can advance diagnostic capabilities.
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