Hybrid Resolution Network Using Edge Guided Region Mutual Information Loss for Human Parsing
Author:
Affiliation:
1. Nanjing University of Science and Technology, Nanjing, China
Publisher
ACM
Link
https://dl.acm.org/doi/pdf/10.1145/3394171.3413831
Reference43 articles.
1. K. Chen J. Pang J. Wang Y. Xiong X. Li and S. Sun. 2019. Hybrid Task Cascade for Instance Segmentation. In CVPR. 4974--4983. K. Chen J. Pang J. Wang Y. Xiong X. Li and S. Sun. 2019. Hybrid Task Cascade for Instance Segmentation. In CVPR. 4974--4983.
2. 2017a. Deeplab: Semantic image segmentation with deep convolutional nets, atrous convolution, and fully connected crfs;Chen L.;PAMI,2017
3. 2017b. Segnet: A deep convolutional encoder-decoder architecture for image segmentation;Chen L.;PAMI,2017
4. L. Chen Y. Yang J. Wang W. Xu and A. Yuille. 2016. Attention to scale: Scale-aware semantic image segmentation. In CVPR. 3640--3649. L. Chen Y. Yang J. Wang W. Xu and A. Yuille. 2016. Attention to scale: Scale-aware semantic image segmentation. In CVPR. 3640--3649.
5. L. C. Chen M. D. Collins Y. Zhu G. Papandreou B. Zoph F. Schroff H. Adam and J Shlens. 2018a. Searching for Efficient Multi-Scale Architectures for Dense Image Prediction. In NIPS. 8699--8710. L. C. Chen M. D. Collins Y. Zhu G. Papandreou B. Zoph F. Schroff H. Adam and J Shlens. 2018a. Searching for Efficient Multi-Scale Architectures for Dense Image Prediction. In NIPS. 8699--8710.
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