Alert button
Picture for Zhennan Yan

Zhennan Yan

Alert button

DeepRecon: Joint 2D Cardiac Segmentation and 3D Volume Reconstruction via A Structure-Specific Generative Method

Add code
Bookmark button
Alert button
Jun 14, 2022
Qi Chang, Zhennan Yan, Mu Zhou, Di Liu, Khalid Sawalha, Meng Ye, Qilong Zhangli, Mikael Kanski, Subhi Al Aref, Leon Axel, Dimitris Metaxas

Figure 1 for DeepRecon: Joint 2D Cardiac Segmentation and 3D Volume Reconstruction via A Structure-Specific Generative Method
Figure 2 for DeepRecon: Joint 2D Cardiac Segmentation and 3D Volume Reconstruction via A Structure-Specific Generative Method
Figure 3 for DeepRecon: Joint 2D Cardiac Segmentation and 3D Volume Reconstruction via A Structure-Specific Generative Method
Figure 4 for DeepRecon: Joint 2D Cardiac Segmentation and 3D Volume Reconstruction via A Structure-Specific Generative Method
Viaarxiv icon

TransFusion: Multi-view Divergent Fusion for Medical Image Segmentation with Transformers

Add code
Bookmark button
Alert button
Mar 21, 2022
Di Liu, Yunhe Gao, Qilong Zhangli, Zhennan Yan, Mu Zhou, Dimitris Metaxas

Figure 1 for TransFusion: Multi-view Divergent Fusion for Medical Image Segmentation with Transformers
Figure 2 for TransFusion: Multi-view Divergent Fusion for Medical Image Segmentation with Transformers
Figure 3 for TransFusion: Multi-view Divergent Fusion for Medical Image Segmentation with Transformers
Figure 4 for TransFusion: Multi-view Divergent Fusion for Medical Image Segmentation with Transformers
Viaarxiv icon

Modality Bank: Learn multi-modality images across data centers without sharing medical data

Add code
Bookmark button
Alert button
Jan 22, 2022
Qi Chang, Hui Qu, Zhennan Yan, Yunhe Gao, Lohendran Baskaran, Dimitris Metaxas

Figure 1 for Modality Bank: Learn multi-modality images across data centers without sharing medical data
Figure 2 for Modality Bank: Learn multi-modality images across data centers without sharing medical data
Figure 3 for Modality Bank: Learn multi-modality images across data centers without sharing medical data
Figure 4 for Modality Bank: Learn multi-modality images across data centers without sharing medical data
Viaarxiv icon

DeepTag: An Unsupervised Deep Learning Method for Motion Tracking on Cardiac Tagging Magnetic Resonance Images

Add code
Bookmark button
Alert button
Mar 29, 2021
Meng Ye, Mikael Kanski, Dong Yang, Qi Chang, Zhennan Yan, Qiaoying Huang, Leon Axel, Dimitris Metaxas

Figure 1 for DeepTag: An Unsupervised Deep Learning Method for Motion Tracking on Cardiac Tagging Magnetic Resonance Images
Figure 2 for DeepTag: An Unsupervised Deep Learning Method for Motion Tracking on Cardiac Tagging Magnetic Resonance Images
Figure 3 for DeepTag: An Unsupervised Deep Learning Method for Motion Tracking on Cardiac Tagging Magnetic Resonance Images
Figure 4 for DeepTag: An Unsupervised Deep Learning Method for Motion Tracking on Cardiac Tagging Magnetic Resonance Images
Viaarxiv icon

Multi-modal AsynDGAN: Learn From Distributed Medical Image Data without Sharing Private Information

Add code
Bookmark button
Alert button
Dec 15, 2020
Qi Chang, Zhennan Yan, Lohendran Baskaran, Hui Qu, Yikai Zhang, Tong Zhang, Shaoting Zhang, Dimitris N. Metaxas

Viaarxiv icon

Learn distributed GAN with Temporary Discriminators

Add code
Bookmark button
Alert button
Jul 17, 2020
Hui Qu, Yikai Zhang, Qi Chang, Zhennan Yan, Chao Chen, Dimitris Metaxas

Figure 1 for Learn distributed GAN with Temporary Discriminators
Figure 2 for Learn distributed GAN with Temporary Discriminators
Figure 3 for Learn distributed GAN with Temporary Discriminators
Figure 4 for Learn distributed GAN with Temporary Discriminators
Viaarxiv icon

Weakly Supervised Deep Nuclei Segmentation Using Partial Points Annotation in Histopathology Images

Add code
Bookmark button
Alert button
Jul 10, 2020
Hui Qu, Pengxiang Wu, Qiaoying Huang, Jingru Yi, Zhennan Yan, Kang Li, Gregory M. Riedlinger, Subhajyoti De, Shaoting Zhang, Dimitris N. Metaxas

Figure 1 for Weakly Supervised Deep Nuclei Segmentation Using Partial Points Annotation in Histopathology Images
Figure 2 for Weakly Supervised Deep Nuclei Segmentation Using Partial Points Annotation in Histopathology Images
Figure 3 for Weakly Supervised Deep Nuclei Segmentation Using Partial Points Annotation in Histopathology Images
Figure 4 for Weakly Supervised Deep Nuclei Segmentation Using Partial Points Annotation in Histopathology Images
Viaarxiv icon

Collaborative Multi-agent Learning for MR Knee Articular Cartilage Segmentation

Add code
Bookmark button
Alert button
Aug 13, 2019
Chaowei Tan, Zhennan Yan, Shaoting Zhang, Kang Li, Dimitris N. Metaxas

Figure 1 for Collaborative Multi-agent Learning for MR Knee Articular Cartilage Segmentation
Figure 2 for Collaborative Multi-agent Learning for MR Knee Articular Cartilage Segmentation
Figure 3 for Collaborative Multi-agent Learning for MR Knee Articular Cartilage Segmentation
Figure 4 for Collaborative Multi-agent Learning for MR Knee Articular Cartilage Segmentation
Viaarxiv icon