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Domain Adaptation for Medical Image Segmentation using Transformation-Invariant Self-Training

About

Models capable of leveraging unlabelled data are crucial in overcoming large distribution gaps between the acquired datasets across different imaging devices and configurations. In this regard, self-training techniques based on pseudo-labeling have been shown to be highly effective for semi-supervised domain adaptation. However, the unreliability of pseudo labels can hinder the capability of self-training techniques to induce abstract representation from the unlabeled target dataset, especially in the case of large distribution gaps. Since the neural network performance should be invariant to image transformations, we look to this fact to identify uncertain pseudo labels. Indeed, we argue that transformation invariant detections can provide more reasonable approximations of ground truth. Accordingly, we propose a semi-supervised learning strategy for domain adaptation termed transformation-invariant self-training (TI-ST). The proposed method assesses pixel-wise pseudo-labels' reliability and filters out unreliable detections during self-training. We perform comprehensive evaluations for domain adaptation using three different modalities of medical images, two different network architectures, and several alternative state-of-the-art domain adaptation methods. Experimental results confirm the superiority of our proposed method in mitigating the lack of target domain annotation and boosting segmentation performance in the target domain.

Negin Ghamsarian, Javier Gamazo Tejero, Pablo M\'arquez Neila, Sebastian Wolf, Martin Zinkernagel, Klaus Schoeffmann, Raphael Sznitman• 2023

Related benchmarks

TaskDatasetResultRank
Optic Cup / Disc SegmentationFundus Domain 4
DC (Cup)85.88
47
Optic Cup / Disc SegmentationFundus Domain 3
DC (Cup)86.22
47
Optic Cup / Disc SegmentationFundus Domain 1
DC (Cup)85.27
47
Optic Cup / Disc SegmentationFundus Domain 2
DC (Cup)82.38
47
Medical Image SegmentationCataract Surgery
Dice Score (%)45.31
18
Medical Image SegmentationOCT
Dice (%)50.93
18
Medical Image SegmentationMRI
Dice Coefficient0.7407
18
Optic disc and cup segmentationRIGA+ BinRushed source, Base1 target 1.0 (test)
HDOD6.54
12
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