Abstract
Background: Early and accurate pancreatic cancer (PC) detection remains a major clinical challenge. Methods: We introduce a novel hybrid deep learning framework for automated classification of CT images, which requires fewer computational resources while achieving high diagnostic performance. We integrated a lightweight MobileNetV3Small backbone with a convolutional block attention module and Low-rank Attention with Shared Efficient Representations (LASER) to enhance feature representation. Feature maps are projected via a 1 × 1 convolution into token sequences and processed through a transformer encoder to capture long-range dependencies. A parallel global average pooling extracts aggregated features, fused using a cross-type interaction (CTI) module. Results: The model was evaluated on 18,942 CT images and achieved 99.34% accuracy, AUC-ROC of 0.9996, Cohen's Kappa of 0.9897, and MCC of 0.9859, outperforming ResNet50, EfficientNetB0, and ViT variants with only 1.26 million parameters. Conclusions: Explainability analyses using Grad-CAM, Grad-CAM++, and attention visualisation suggest that the model focuses on clinically relevant regions.
| Original language | English |
|---|---|
| Article number | e70164 |
| Journal | International Journal of Medical Robotics and Computer Assisted Surgery |
| Volume | 22 |
| Issue number | 2 |
| DOIs | |
| State | Published - Apr 2026 |
Keywords
- attention
- classification
- deep learning
- pancreatic cancer
- transformer
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