Alert button
Picture for Zhen-Liang Ni

Zhen-Liang Ni

Alert button

2020 CATARACTS Semantic Segmentation Challenge

Add code
Bookmark button
Alert button
Oct 21, 2021
Imanol Luengo, Maria Grammatikopoulou, Rahim Mohammadi, Chris Walsh, Chinedu Innocent Nwoye, Deepak Alapatt, Nicolas Padoy, Zhen-Liang Ni, Chen-Chen Fan, Gui-Bin Bian, Zeng-Guang Hou, Heonjin Ha, Jiacheng Wang, Haojie Wang, Dong Guo, Lu Wang, Guotai Wang, Mobarakol Islam, Bharat Giddwani, Ren Hongliang, Theodoros Pissas, Claudio Ravasio Martin Huber, Jeremy Birch, Joan M. Nunez Do Rio, Lyndon da Cruz, Christos Bergeles, Hongyu Chen, Fucang Jia, Nikhil KumarTomar, Debesh Jha, Michael A. Riegler, Pal Halvorsen, Sophia Bano, Uddhav Vaghela, Jianyuan Hong, Haili Ye, Feihong Huang, Da-Han Wang, Danail Stoyanov

Figure 1 for 2020 CATARACTS Semantic Segmentation Challenge
Figure 2 for 2020 CATARACTS Semantic Segmentation Challenge
Figure 3 for 2020 CATARACTS Semantic Segmentation Challenge
Figure 4 for 2020 CATARACTS Semantic Segmentation Challenge
Viaarxiv icon

Group Feature Learning and Domain Adversarial Neural Network for aMCI Diagnosis System Based on EEG

Add code
Bookmark button
Alert button
Apr 28, 2021
Chen-Chen Fan, Haiqun Xie, Liang Peng, Hongjun Yang, Zhen-Liang Ni, Guan'an Wang, Yan-Jie Zhou, Sheng Chen, Zhijie Fang, Shuyun Huang, Zeng-Guang Hou

Figure 1 for Group Feature Learning and Domain Adversarial Neural Network for aMCI Diagnosis System Based on EEG
Figure 2 for Group Feature Learning and Domain Adversarial Neural Network for aMCI Diagnosis System Based on EEG
Figure 3 for Group Feature Learning and Domain Adversarial Neural Network for aMCI Diagnosis System Based on EEG
Figure 4 for Group Feature Learning and Domain Adversarial Neural Network for aMCI Diagnosis System Based on EEG
Viaarxiv icon

Robust Medical Instrument Segmentation Challenge 2019

Add code
Bookmark button
Alert button
Mar 23, 2020
Tobias Ross, Annika Reinke, Peter M. Full, Martin Wagner, Hannes Kenngott, Martin Apitz, Hellena Hempe, Diana Mindroc Filimon, Patrick Scholz, Thuy Nuong Tran, Pierangela Bruno, Pablo Arbeláez, Gui-Bin Bian, Sebastian Bodenstedt, Jon Lindström Bolmgren, Laura Bravo-Sánchez, Hua-Bin Chen, Cristina González, Dong Guo, Pål Halvorsen, Pheng-Ann Heng, Enes Hosgor, Zeng-Guang Hou, Fabian Isensee, Debesh Jha, Tingting Jiang, Yueming Jin, Kadir Kirtac, Sabrina Kletz, Stefan Leger, Zhixuan Li, Klaus H. Maier-Hein, Zhen-Liang Ni, Michael A. Riegler, Klaus Schoeffmann, Ruohua Shi, Stefanie Speidel, Michael Stenzel, Isabell Twick, Gutai Wang, Jiacheng Wang, Liansheng Wang, Lu Wang, Yujie Zhang, Yan-Jie Zhou, Lei Zhu, Manuel Wiesenfarth, Annette Kopp-Schneider, Beat P. Müller-Stich, Lena Maier-Hein

Figure 1 for Robust Medical Instrument Segmentation Challenge 2019
Figure 2 for Robust Medical Instrument Segmentation Challenge 2019
Figure 3 for Robust Medical Instrument Segmentation Challenge 2019
Figure 4 for Robust Medical Instrument Segmentation Challenge 2019
Viaarxiv icon

BARNet: Bilinear Attention Network with Adaptive Receptive Field for Surgical Instrument Segmentation

Add code
Bookmark button
Alert button
Jan 20, 2020
Zhen-Liang Ni, Gui-Bin Bian, Guan-An Wang, Xiao-Hu Zhou, Zeng-Guang Hou, Xiao-Liang Xie, Zhen Li, Yu-Han Wang

Figure 1 for BARNet: Bilinear Attention Network with Adaptive Receptive Field for Surgical Instrument Segmentation
Figure 2 for BARNet: Bilinear Attention Network with Adaptive Receptive Field for Surgical Instrument Segmentation
Figure 3 for BARNet: Bilinear Attention Network with Adaptive Receptive Field for Surgical Instrument Segmentation
Figure 4 for BARNet: Bilinear Attention Network with Adaptive Receptive Field for Surgical Instrument Segmentation
Viaarxiv icon

Attention-Guided Lightweight Network for Real-Time Segmentation of Robotic Surgical Instruments

Add code
Bookmark button
Alert button
Oct 24, 2019
Zhen-Liang Ni, Gui-Bin Bian, Zeng-Guang Hou, Xiao-Hu Zhou, Xiao-Liang Xie, Zhen Li

Figure 1 for Attention-Guided Lightweight Network for Real-Time Segmentation of Robotic Surgical Instruments
Figure 2 for Attention-Guided Lightweight Network for Real-Time Segmentation of Robotic Surgical Instruments
Figure 3 for Attention-Guided Lightweight Network for Real-Time Segmentation of Robotic Surgical Instruments
Figure 4 for Attention-Guided Lightweight Network for Real-Time Segmentation of Robotic Surgical Instruments
Viaarxiv icon

RAUNet: Residual Attention U-Net for Semantic Segmentation of Cataract Surgical Instruments

Add code
Bookmark button
Alert button
Oct 02, 2019
Zhen-Liang Ni, Gui-Bin Bian, Xiao-Hu Zhou, Zeng-Guang Hou, Xiao-Liang Xie, Chen Wang, Yan-Jie Zhou, Rui-Qi Li, Zhen Li

Figure 1 for RAUNet: Residual Attention U-Net for Semantic Segmentation of Cataract Surgical Instruments
Figure 2 for RAUNet: Residual Attention U-Net for Semantic Segmentation of Cataract Surgical Instruments
Figure 3 for RAUNet: Residual Attention U-Net for Semantic Segmentation of Cataract Surgical Instruments
Figure 4 for RAUNet: Residual Attention U-Net for Semantic Segmentation of Cataract Surgical Instruments
Viaarxiv icon

RASNet: Segmentation for Tracking Surgical Instruments in Surgical Videos Using Refined Attention Segmentation Network

Add code
Bookmark button
Alert button
May 21, 2019
Zhen-Liang Ni, Gui-Bin Bian, Xiao-Liang Xie, Zeng-Guang Hou, Xiao-Hu Zhou, Yan-Jie Zhou

Figure 1 for RASNet: Segmentation for Tracking Surgical Instruments in Surgical Videos Using Refined Attention Segmentation Network
Figure 2 for RASNet: Segmentation for Tracking Surgical Instruments in Surgical Videos Using Refined Attention Segmentation Network
Figure 3 for RASNet: Segmentation for Tracking Surgical Instruments in Surgical Videos Using Refined Attention Segmentation Network
Figure 4 for RASNet: Segmentation for Tracking Surgical Instruments in Surgical Videos Using Refined Attention Segmentation Network
Viaarxiv icon