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Edge-enhanced dual discriminator generative adversarial network for fast MRI with parallel imaging using multi-view information

Jiahao Huang, Weiping Ding, Jun Lv, Jingwen Yang, Hao Dong, Javier Del Ser, Jun Xia, Tiaojuan Ren, Stephen T.C. Wong, Guang Yang

2022Applied Intelligence25 citationsDOIOpen Access PDF

Abstract

-space. In recent years, most MRI reconstruction methods proposed in the literature focus on holistic image reconstruction rather than enhancing the edge information. This work steps aside this general trend by elaborating on the enhancement of edge information. Specifically, we introduce a novel parallel imaging coupled dual discriminator generative adversarial network (PIDD-GAN) for fast multi-channel MRI reconstruction by incorporating multi-view information. The dual discriminator design aims to improve the edge information in MRI reconstruction. One discriminator is used for holistic image reconstruction, whereas the other one is responsible for enhancing edge information. An improved U-Net with local and global residual learning is proposed for the generator. Frequency channel attention blocks (FCA Blocks) are embedded in the generator for incorporating attention mechanisms. Content loss is introduced to train the generator for better reconstruction quality. We performed comprehensive experiments on Calgary-Campinas public brain MR dataset and compared our method with state-of-the-art MRI reconstruction methods. Ablation studies of residual learning were conducted on the MICCAI13 dataset to validate the proposed modules. Results show that our PIDD-GAN provides high-quality reconstructed MR images, with well-preserved edge information. The time of single-image reconstruction is below 5ms, which meets the demand of faster processing.

Topics & Concepts

DiscriminatorComputer scienceGenerator (circuit theory)Artificial intelligenceEnhanced Data Rates for GSM EvolutionIterative reconstructionDeep learningResidualProcess (computing)Computer visionAlgorithmDetectorTelecommunicationsPhysicsQuantum mechanicsOperating systemPower (physics)Advanced MRI Techniques and ApplicationsMedical Imaging Techniques and ApplicationsAdvanced Image Processing Techniques
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