Alert button
Picture for Shengli Li

Shengli Li

Alert button

Hybrid Attention for Automatic Segmentation of Whole Fetal Head in Prenatal Ultrasound Volumes

Add code
Bookmark button
Alert button
Apr 28, 2020
Xin Yang, Xu Wang, Yi Wang, Haoran Dou, Shengli Li, Huaxuan Wen, Yi Lin, Pheng-Ann Heng, Dong Ni

Figure 1 for Hybrid Attention for Automatic Segmentation of Whole Fetal Head in Prenatal Ultrasound Volumes
Figure 2 for Hybrid Attention for Automatic Segmentation of Whole Fetal Head in Prenatal Ultrasound Volumes
Figure 3 for Hybrid Attention for Automatic Segmentation of Whole Fetal Head in Prenatal Ultrasound Volumes
Figure 4 for Hybrid Attention for Automatic Segmentation of Whole Fetal Head in Prenatal Ultrasound Volumes
Viaarxiv icon

FetusMap: Fetal Pose Estimation in 3D Ultrasound

Add code
Bookmark button
Alert button
Oct 11, 2019
Xin Yang, Wenlong Shi, Haoran Dou, Jikuan Qian, Yi Wang, Wufeng Xue, Shengli Li, Dong Ni, Pheng-Ann Heng

Figure 1 for FetusMap: Fetal Pose Estimation in 3D Ultrasound
Figure 2 for FetusMap: Fetal Pose Estimation in 3D Ultrasound
Figure 3 for FetusMap: Fetal Pose Estimation in 3D Ultrasound
Figure 4 for FetusMap: Fetal Pose Estimation in 3D Ultrasound
Viaarxiv icon

Joint Segmentation and Landmark Localization of Fetal Femur in Ultrasound Volumes

Add code
Bookmark button
Alert button
Aug 31, 2019
Xu Wang, Xin Yang, Haoran Dou, Shengli Li, Pheng-Ann Heng, Dong Ni

Figure 1 for Joint Segmentation and Landmark Localization of Fetal Femur in Ultrasound Volumes
Figure 2 for Joint Segmentation and Landmark Localization of Fetal Femur in Ultrasound Volumes
Figure 3 for Joint Segmentation and Landmark Localization of Fetal Femur in Ultrasound Volumes
Figure 4 for Joint Segmentation and Landmark Localization of Fetal Femur in Ultrasound Volumes
Viaarxiv icon

Deep Adaptive Network: An Efficient Deep Neural Network with Sparse Binary Connections

Add code
Bookmark button
Alert button
Apr 21, 2016
Xichuan Zhou, Shengli Li, Kai Qin, Kunping Li, Fang Tang, Shengdong Hu, Shujun Liu, Zhi Lin

Figure 1 for Deep Adaptive Network: An Efficient Deep Neural Network with Sparse Binary Connections
Figure 2 for Deep Adaptive Network: An Efficient Deep Neural Network with Sparse Binary Connections
Figure 3 for Deep Adaptive Network: An Efficient Deep Neural Network with Sparse Binary Connections
Figure 4 for Deep Adaptive Network: An Efficient Deep Neural Network with Sparse Binary Connections
Viaarxiv icon