Accurate brain tumor segmentation remains a challenging task due to structural complexity and great individual differences of gliomas. Leveraging the pre-eminent detail resilience of CRF and spatial feature extraction capacity of V-net, we propose a multimodal 3D Volume Generative Adversarial Network (3D-vGAN) for precise segmentation. The model utilizes Pseudo-3D for V-net improvement, adds conditional random field after generator and use original image as supplemental guidance. Results, using the BraTS-2018 dataset, show that 3D-vGAN outperforms classical segmentation models, including U-net, Gan, FCN and 3D V-net, reaching specificity over 99.8%.
@article{arxiv.2411.14418,
title = {Multimodal 3D Brain Tumor Segmentation with Adversarial Training and Conditional Random Field},
author = {Lan Jiang and Yuchao Zheng and Miao Yu and Haiqing Zhang and Fatemah Aladwani and Alessandro Perelli},
journal= {arXiv preprint arXiv:2411.14418},
year = {2024}
}
Comments
13 pages, 7 figures, Annual Conference on Medical Image Understanding and Analysis (MIUA) 2024