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Realistic Adversarial Data Augmentation for MR Image Segmentation

About

Neural network-based approaches can achieve high accuracy in various medical image segmentation tasks. However, they generally require large labelled datasets for supervised learning. Acquiring and manually labelling a large medical dataset is expensive and sometimes impractical due to data sharing and privacy issues. In this work, we propose an adversarial data augmentation method for training neural networks for medical image segmentation. Instead of generating pixel-wise adversarial attacks, our model generates plausible and realistic signal corruptions, which models the intensity inhomogeneities caused by a common type of artefacts in MR imaging: bias field. The proposed method does not rely on generative networks, and can be used as a plug-in module for general segmentation networks in both supervised and semi-supervised learning. Using cardiac MR imaging we show that such an approach can improve the generalization ability and robustness of models as well as provide significant improvements in low-data scenarios.

Chen Chen, Chen Qin, Huaqi Qiu, Cheng Ouyang, Shuo Wang, Liang Chen, Giacomo Tarroni, Wenjia Bai, Daniel Rueckert• 2020

Related benchmarks

TaskDatasetResultRank
Cardiac SegmentationACDC (test)
Avg Dice88.65
141
Cardiac SegmentationACDC-C (unseen test)
Dice Score78.39
36
Cardiac SegmentationAverage (ACDC, M&Ms, RandBias, RandGhosting, RandMotion, RandSpike) (out-of-domain)
Dice Score74.5
32
Brain Tissue SegmentationMRBrainS 2013 (test)
GM DSC69.95
25
Prostate SegmentationMulti-site Prostate MRI (leave-one-domain-out)
Site A vs Rest Score77.45
22
Cardiac SegmentationCross-site unseen (test)
Dice Score82.5
18
Cardiac SegmentationM&Ms (out-of-domain)
Dice Score60.13
13
Cardiac SegmentationRandBias (out-of-domain)
Dice67.09
7
Cardiac SegmentationACDC (out-of-domain)
Dice Score75.73
7
Cardiac SegmentationRandGhosting (out-of-domain)
Dice Score67.73
7
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