Alert button
Picture for Jaime Gateno

Jaime Gateno

Alert button

Soft-tissue Driven Craniomaxillofacial Surgical Planning

Add code
Bookmark button
Alert button
Jul 20, 2023
Xi Fang, Daeseung Kim, Xuanang Xu, Tianshu Kuang, Nathan Lampen, Jungwook Lee, Hannah H. Deng, Jaime Gateno, Michael A. K. Liebschner, James J. Xia, Pingkun Yan

Figure 1 for Soft-tissue Driven Craniomaxillofacial Surgical Planning
Figure 2 for Soft-tissue Driven Craniomaxillofacial Surgical Planning
Figure 3 for Soft-tissue Driven Craniomaxillofacial Surgical Planning
Figure 4 for Soft-tissue Driven Craniomaxillofacial Surgical Planning
Viaarxiv icon

Deep Learning-based Facial Appearance Simulation Driven by Surgically Planned Craniomaxillofacial Bony Movement

Add code
Bookmark button
Alert button
Oct 04, 2022
Xi Fang, Daeseung Kim, Xuanang Xu, Tianshu Kuang, Hannah H. Deng, Joshua C. Barber, Nathan Lampen, Jaime Gateno, Michael A. K. Liebschner, James J. Xia, Pingkun Yan

Viaarxiv icon

Federated Cross Learning for Medical Image Segmentation

Add code
Bookmark button
Alert button
Apr 05, 2022
Xuanang Xu, Tianyi Chen, Han Deng, Tianshu Kuang, Joshua C. Barber, Daeseung Kim, Jaime Gateno, Pingkun Yan, James J. Xia

Figure 1 for Federated Cross Learning for Medical Image Segmentation
Figure 2 for Federated Cross Learning for Medical Image Segmentation
Figure 3 for Federated Cross Learning for Medical Image Segmentation
Figure 4 for Federated Cross Learning for Medical Image Segmentation
Viaarxiv icon

SkullEngine: A Multi-stage CNN Framework for Collaborative CBCT Image Segmentation and Landmark Detection

Add code
Bookmark button
Alert button
Oct 07, 2021
Qin Liu, Han Deng, Chunfeng Lian, Xiaoyang Chen, Deqiang Xiao, Lei Ma, Xu Chen, Tianshu Kuang, Jaime Gateno, Pew-Thian Yap, James J. Xia

Figure 1 for SkullEngine: A Multi-stage CNN Framework for Collaborative CBCT Image Segmentation and Landmark Detection
Figure 2 for SkullEngine: A Multi-stage CNN Framework for Collaborative CBCT Image Segmentation and Landmark Detection
Figure 3 for SkullEngine: A Multi-stage CNN Framework for Collaborative CBCT Image Segmentation and Landmark Detection
Figure 4 for SkullEngine: A Multi-stage CNN Framework for Collaborative CBCT Image Segmentation and Landmark Detection
Viaarxiv icon

A Self-Supervised Deep Framework for Reference Bony Shape Estimation in Orthognathic Surgical Planning

Add code
Bookmark button
Alert button
Sep 11, 2021
Deqiang Xiao, Hannah Deng, Tianshu Kuang, Lei Ma, Qin Liu, Xu Chen, Chunfeng Lian, Yankun Lang, Daeseung Kim, Jaime Gateno, Steve Guofang Shen, Dinggang Shen, Pew-Thian Yap, James J. Xia

Figure 1 for A Self-Supervised Deep Framework for Reference Bony Shape Estimation in Orthognathic Surgical Planning
Figure 2 for A Self-Supervised Deep Framework for Reference Bony Shape Estimation in Orthognathic Surgical Planning
Figure 3 for A Self-Supervised Deep Framework for Reference Bony Shape Estimation in Orthognathic Surgical Planning
Figure 4 for A Self-Supervised Deep Framework for Reference Bony Shape Estimation in Orthognathic Surgical Planning
Viaarxiv icon

Calculating the Midsagittal Plane for Symmetrical Bilateral Shapes: Applications to Clinical Facial Surgical Planning

Add code
Bookmark button
Alert button
Mar 11, 2018
Aarti Jajoo, Matthew Nicol, Jaime Gateno, Ken-Chung Chen, Zhen Tang, Tasadduk Chowdhury, Jainfu Li, Steve Goufang Shen, James J. Xia

Figure 1 for Calculating the Midsagittal Plane for Symmetrical Bilateral Shapes: Applications to Clinical Facial Surgical Planning
Figure 2 for Calculating the Midsagittal Plane for Symmetrical Bilateral Shapes: Applications to Clinical Facial Surgical Planning
Figure 3 for Calculating the Midsagittal Plane for Symmetrical Bilateral Shapes: Applications to Clinical Facial Surgical Planning
Figure 4 for Calculating the Midsagittal Plane for Symmetrical Bilateral Shapes: Applications to Clinical Facial Surgical Planning
Viaarxiv icon