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YiRang Shin

Showing results (1-10 of 19) with videos related to

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JAMA Network Open|October 15, 2020
Temporal Trends in Cervical Spine Curvature of South Korean Adults Assessed by Deep Learning System Segmentation, 2006-2018YiRang Shin, Kyunghwa Han, Young Han Lee
Scientific Reports|February 3, 2022
Arterial enhancing local tumor progression detection on CT images using convolutional neural network after hepatocellular carcinoma ablation: a preliminary studySanghyeok Lim, YiRang Shin, Young Han Lee
Skeletal Radiology|August 3, 2021
AI musculoskeletal clinical applications: how can AI increase my day-to-day efficiency?YiRang Shin, Sungjun Kim, Young Han Lee
Radiology. Artificial Intelligence|June 17, 2021
Deep Generative Adversarial Networks: Applications in Musculoskeletal ImagingYiRang Shin, Jaemoon Yang, Young Han Lee
Scientific Reports|March 5, 2022
Deep learning based sarcopenia prediction from shear-wave ultrasonographic elastography and gray scale ultrasonography of rectus femoris muscleJisook Yi, YiRang Shin, Seok Hahn, et al.
Ultrasonography (Seoul, Korea)|November 27, 2020
Artificial intelligence in musculoskeletal ultrasound imagingYiRang Shin, Jaemoon Yang, Young Han Lee, et al.
IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|July 16, 2025
High-Volume Acquisition Rate Nonlinear Imaging Enables Robust 3-D Ultrasound Localization MicroscopyYiRang Shin, Bing-Ze Lin, Matthew R Lowerison, et al.
Biorxiv : the Preprint Server for Biology|September 2, 2025
Microbubble Track-based Functional Ultrasound Localization Microscopy in Awake MiceYike Wang, Matthew R Lowerison, Zhe Huang, et al.
IEEE Transactions on Medical Imaging|February 3, 2026
Microbubble Backscattering Intensity Improves the Sensitivity of Three-dimensional (3D) Functional Ultrasound Localization Microscopy (fULM)YiRang Shin, Qi You, Yike Wang, et al.
Biorxiv : the Preprint Server for Biology|November 19, 2025
Microbubble Backscattering Intensity Improves the Sensitivity of Three-dimensional (3D) Functional Ultrasound Localization Microscopy (fULM)YiRang Shin, Qi You, Yike Wang, et al.
Pageof 2

Showing results (1-10 of 19) with videos related to

Sort By:
Pageof 2
JAMA Network Open|October 15, 2020
Temporal Trends in Cervical Spine Curvature of South Korean Adults Assessed by Deep Learning System Segmentation, 2006-2018YiRang Shin, Kyunghwa Han, Young Han Lee
Scientific Reports|February 3, 2022
Arterial enhancing local tumor progression detection on CT images using convolutional neural network after hepatocellular carcinoma ablation: a preliminary studySanghyeok Lim, YiRang Shin, Young Han Lee
Skeletal Radiology|August 3, 2021
AI musculoskeletal clinical applications: how can AI increase my day-to-day efficiency?YiRang Shin, Sungjun Kim, Young Han Lee
Radiology. Artificial Intelligence|June 17, 2021
Deep Generative Adversarial Networks: Applications in Musculoskeletal ImagingYiRang Shin, Jaemoon Yang, Young Han Lee
Scientific Reports|March 5, 2022
Deep learning based sarcopenia prediction from shear-wave ultrasonographic elastography and gray scale ultrasonography of rectus femoris muscleJisook Yi, YiRang Shin, Seok Hahn, et al.
Ultrasonography (Seoul, Korea)|November 27, 2020
Artificial intelligence in musculoskeletal ultrasound imagingYiRang Shin, Jaemoon Yang, Young Han Lee, et al.
IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|July 16, 2025
High-Volume Acquisition Rate Nonlinear Imaging Enables Robust 3-D Ultrasound Localization MicroscopyYiRang Shin, Bing-Ze Lin, Matthew R Lowerison, et al.
Biorxiv : the Preprint Server for Biology|September 2, 2025
Microbubble Track-based Functional Ultrasound Localization Microscopy in Awake MiceYike Wang, Matthew R Lowerison, Zhe Huang, et al.
IEEE Transactions on Medical Imaging|February 3, 2026
Microbubble Backscattering Intensity Improves the Sensitivity of Three-dimensional (3D) Functional Ultrasound Localization Microscopy (fULM)YiRang Shin, Qi You, Yike Wang, et al.
Biorxiv : the Preprint Server for Biology|November 19, 2025
Microbubble Backscattering Intensity Improves the Sensitivity of Three-dimensional (3D) Functional Ultrasound Localization Microscopy (fULM)YiRang Shin, Qi You, Yike Wang, et al.
Pageof 2