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Published on: October 16, 2013
A triple pronged approach for ulcerative colitis severity classification using multimodal, meta, and transformer
Md Nasim Ahmed1, Dipta Neogi1, Muhammad Rafsan Kabir2
1Department of Electrical and Computer Engineering, North South University, Dhaka, 1229, Bangladesh.
Deep learning models accurately classify ulcerative colitis (UC) severity using Vision Transformers and multimodal approaches. Explainable AI enhances clinical trust in these advanced diagnostic tools.
Area of Science:
- Artificial Intelligence
- Medical Imaging
- Gastroenterology
Background:
- Ulcerative colitis (UC) requires precise severity classification for effective treatment.
- Current methods may lack the accuracy needed for optimal therapeutic decisions.
Purpose of the Study:
- To develop and evaluate deep learning models for classifying ulcerative colitis severity.
- To explore the efficacy of Vision Transformers (ViT), multimodal learning, and few-shot meta-learning for this task.
Main Methods:
- Utilized a triple-pronged deep learning approach: multimodal inference, few-shot meta-learning, and ViT-based ensembling.
- Evaluated various ViT architectures (Swin-Base) and ensembles, alongside multimodal pre-trained frameworks (CLIP, BLIP, FLAVA) and few-shot methods (Matching Networks).
- Employed SHapley Additive exPlanations (SHAP) for model interpretability.
Main Results:
- A Swin-Base ViT model achieved 90% accuracy; a diverse ViT ensemble reached 93% accuracy.
- Multimodal frameworks with conventional ML yielded 83% accuracy.
- Few-shot meta-learning attained 83% accuracy in a 5-shot setting.
Conclusions:
- Deep learning, particularly ViT ensembles and multimodal strategies, shows significant potential for accurate UC severity classification.
- Model interpretability through SHAP is crucial for building clinical trust in AI-driven medical image analysis.
- These advanced techniques offer robust solutions for enhancing diagnostic precision in UC management.
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