English

Conditional Adversarial Network for Semantic Segmentation of Brain Tumor

Computer Vision and Pattern Recognition 2017-08-18 v1

Abstract

Automated medical image analysis has a significant value in diagnosis and treatment of lesions. Brain tumors segmentation has a special importance and difficulty due to the difference in appearances and shapes of the different tumor regions in magnetic resonance images. Additionally, the data sets are heterogeneous and usually limited in size in comparison with the computer vision problems. The recently proposed adversarial training has shown promising results in generative image modeling. In this paper, we propose a novel end-to-end trainable architecture for brain tumor semantic segmentation through conditional adversarial training. We exploit conditional Generative Adversarial Network (cGAN) and train a semantic segmentation Convolution Neural Network (CNN) along with an adversarial network that discriminates segmentation maps coming from the ground truth or from the segmentation network for BraTS 2017 segmentation task[15, 4, 2, 3]. We also propose an end-to-end trainable CNN for survival day prediction based on deep learning techniques for BraTS 2017 prediction task [15, 4, 2, 3]. The experimental results demonstrate the superior ability of the proposed approach for both tasks. The proposed model achieves on validation data a DICE score, Sensitivity and Specificity respectively 0.68, 0.99 and 0.98 for the whole tumor, regarding online judgment system.

Keywords

Cite

@article{arxiv.1708.05227,
  title  = {Conditional Adversarial Network for Semantic Segmentation of Brain Tumor},
  author = {Mina Rezaei and Konstantin Harmuth and Willi Gierke and Thomas Kellermeier and Martin Fischer and Haojin Yang and Christoph Meinel},
  journal= {arXiv preprint arXiv:1708.05227},
  year   = {2017}
}

Comments

Submitted to BraTS challenges which is part of MICCAI-2017

R2 v1 2026-06-22T21:17:01.946Z