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G-CASCADE: Efficient Cascaded Graph Convolutional Decoding for 2D Medical Image Segmentation

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In recent years, medical image segmentation has become an important application in the field of computer-aided diagnosis. In this paper, we are the first to propose a new graph convolution-based decoder namely, Cascaded Graph Convolutional Attention Decoder (G-CASCADE), for 2D medical image segmentation. G-CASCADE progressively refines multi-stage feature maps generated by hierarchical transformer encoders with an efficient graph convolution block. The encoder utilizes the self-attention mechanism to capture long-range dependencies, while the decoder refines the feature maps preserving long-range information due to the global receptive fields of the graph convolution block. Rigorous evaluations of our decoder with multiple transformer encoders on five medical image segmentation tasks (i.e., Abdomen organs, Cardiac organs, Polyp lesions, Skin lesions, and Retinal vessels) show that our model outperforms other state-of-the-art (SOTA) methods. We also demonstrate that our decoder achieves better DICE scores than the SOTA CASCADE decoder with 80.8% fewer parameters and 82.3% fewer FLOPs. Our decoder can easily be used with other hierarchical encoders for general-purpose semantic and medical image segmentation tasks.

Md Mostafijur Rahman, Radu Marculescu• 2023

Related benchmarks

TaskDatasetResultRank
Polyp SegmentationCVC-ClinicDB (test)
DSC94.68
196
Multi-organ SegmentationSynapse multi-organ CT (test)
DSC84.54
81
Skin Lesion SegmentationISIC 2018 (test)--
74
Polyp SegmentationKvasir (test)
Dice Coefficient92.74
73
Retinal Vessel SegmentationDRIVE (test)
Accuracy97.07
52
Multi-organ SegmentationSynapse multi-organ segmentation (test)
Avg DSC0.8328
50
Medical Image SegmentationACDC
DSC (Avg)92.23
48
Polyp SegmentationColonDB (test)
DICE0.8261
47
Retinal Vessel SegmentationCHASE DB1
Sensitivity (SE)85.84
47
Polyp SegmentationEndoScene (test)
Dice Coefficient90.56
33
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