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S2S2: Semantic Stacking for Robust Semantic Segmentation in Medical Imaging

About

Robustness and generalizability in medical image segmentation are often hindered by scarcity and limited diversity of training data, which stands in contrast to the variability encountered during inference. While conventional strategies -- such as domain-specific augmentation, specialized architectures, and tailored training procedures -- can alleviate these issues, they depend on the availability and reliability of domain knowledge. When such knowledge is unavailable, misleading, or improperly applied, performance may deteriorate. In response, we introduce a novel, domain-agnostic, add-on, and data-driven strategy inspired by image stacking in image denoising. Termed ``semantic stacking,'' our method estimates a denoised semantic representation that complements the conventional segmentation loss during training. This method does not depend on domain-specific assumptions, making it broadly applicable across diverse image modalities, model architectures, and augmentation techniques. Through extensive experiments, we validate the superiority of our approach in improving segmentation performance under diverse conditions. Code is available at https://github.com/ymp5078/Semantic-Stacking.

Yimu Pan, Sitao Zhang, Alison D. Gernand, Jeffery A. Goldstein, James Z. Wang• 2024

Related benchmarks

TaskDatasetResultRank
Polyp SegmentationKvasir
Dice Score93.2
128
Medical Image SegmentationAbdominal CT-MRI
Dice Score0.8855
20
Medical Image SegmentationAbdominal MRI-CT
Dice83.15
20
Polyp SegmentationCVC
Dice Score94.88
17
Medical Image SegmentationAbd-MRI
Average Dice91.28
13
Medical Image SegmentationCardiac bSSFP-LGE--
12
Medical Image SegmentationCardiac LGE-bSSFP--
12
Polyp SegmentationPolyp Kvasir and CVC (out-of-domain)
Dice Score (Kvasir-CVC)92.85
6
Semantic segmentationSynapse multi-organ CT
Dice Score0.8119
5
Semantic segmentationACDC
Dice Score90.4
5
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