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Few-shot 3D Multi-modal Medical Image Segmentation using Generative Adversarial Learning

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arxiv 1810.12241 v1 pith:QPD4NM2S submitted 2018-10-29 cs.CV

classification cs.CV
keywords adversarialsegmentationlearningimagesmethodapproachesavailablegenerative
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We address the problem of segmenting 3D multi-modal medical images in scenarios where very few labeled examples are available for training. Leveraging the recent success of adversarial learning for semi-supervised segmentation, we propose a novel method based on Generative Adversarial Networks (GANs) to train a segmentation model with both labeled and unlabeled images. The proposed method prevents over-fitting by learning to discriminate between true and fake patches obtained by a generator network. Our work extends current adversarial learning approaches, which focus on 2D single-modality images, to the more challenging context of 3D volumes of multiple modalities. The proposed method is evaluated on the problem of segmenting brain MRI from the iSEG-2017 and MRBrainS 2013 datasets. Significant performance improvement is reported, compared to state-of-art segmentation networks trained in a fully-supervised manner. In addition, our work presents a comprehensive analysis of different GAN architectures for semi-supervised segmentation, showing recent techniques like feature matching to yield a higher performance than conventional adversarial training approaches. Our code is publicly available at https://github.com/arnab39/FewShot_GAN-Unet3D

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  1. MulModSeg: Enhancing Unpaired Multi-Modal Medical Image Segmentation with Modality-Conditioned Text Embedding and Alternating Training

    eess.IV 2024-11 conditional novelty 5.0 of 10

    MulModSeg uses modality-conditioned text embeddings and alternating CT/MR training to improve unpaired multi-modal medical image segmentation.

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