Alert button
Picture for Sang-gil Lee

Sang-gil Lee

Alert button

Edit-A-Video: Single Video Editing with Object-Aware Consistency

Add code
Bookmark button
Alert button
Apr 01, 2023
Chaehun Shin, Heeseung Kim, Che Hyun Lee, Sang-gil Lee, Sungroh Yoon

Figure 1 for Edit-A-Video: Single Video Editing with Object-Aware Consistency
Figure 2 for Edit-A-Video: Single Video Editing with Object-Aware Consistency
Figure 3 for Edit-A-Video: Single Video Editing with Object-Aware Consistency
Figure 4 for Edit-A-Video: Single Video Editing with Object-Aware Consistency
Viaarxiv icon

BigVGAN: A Universal Neural Vocoder with Large-Scale Training

Add code
Bookmark button
Alert button
Jun 09, 2022
Sang-gil Lee, Wei Ping, Boris Ginsburg, Bryan Catanzaro, Sungroh Yoon

Figure 1 for BigVGAN: A Universal Neural Vocoder with Large-Scale Training
Figure 2 for BigVGAN: A Universal Neural Vocoder with Large-Scale Training
Figure 3 for BigVGAN: A Universal Neural Vocoder with Large-Scale Training
Figure 4 for BigVGAN: A Universal Neural Vocoder with Large-Scale Training
Viaarxiv icon

Robust End-to-End Focal Liver Lesion Detection using Unregistered Multiphase Computed Tomography Images

Add code
Bookmark button
Alert button
Dec 17, 2021
Sang-gil Lee, Eunji Kim, Jae Seok Bae, Jung Hoon Kim, Sungroh Yoon

Figure 1 for Robust End-to-End Focal Liver Lesion Detection using Unregistered Multiphase Computed Tomography Images
Figure 2 for Robust End-to-End Focal Liver Lesion Detection using Unregistered Multiphase Computed Tomography Images
Figure 3 for Robust End-to-End Focal Liver Lesion Detection using Unregistered Multiphase Computed Tomography Images
Figure 4 for Robust End-to-End Focal Liver Lesion Detection using Unregistered Multiphase Computed Tomography Images
Viaarxiv icon

PriorGrad: Improving Conditional Denoising Diffusion Models with Data-Driven Adaptive Prior

Add code
Bookmark button
Alert button
Jun 11, 2021
Sang-gil Lee, Heeseung Kim, Chaehun Shin, Xu Tan, Chang Liu, Qi Meng, Tao Qin, Wei Chen, Sungroh Yoon, Tie-Yan Liu

Figure 1 for PriorGrad: Improving Conditional Denoising Diffusion Models with Data-Driven Adaptive Prior
Figure 2 for PriorGrad: Improving Conditional Denoising Diffusion Models with Data-Driven Adaptive Prior
Figure 3 for PriorGrad: Improving Conditional Denoising Diffusion Models with Data-Driven Adaptive Prior
Figure 4 for PriorGrad: Improving Conditional Denoising Diffusion Models with Data-Driven Adaptive Prior
Viaarxiv icon

NanoFlow: Scalable Normalizing Flows with Sublinear Parameter Complexity

Add code
Bookmark button
Alert button
Jun 15, 2020
Sang-gil Lee, Sungwon Kim, Sungroh Yoon

Figure 1 for NanoFlow: Scalable Normalizing Flows with Sublinear Parameter Complexity
Figure 2 for NanoFlow: Scalable Normalizing Flows with Sublinear Parameter Complexity
Figure 3 for NanoFlow: Scalable Normalizing Flows with Sublinear Parameter Complexity
Figure 4 for NanoFlow: Scalable Normalizing Flows with Sublinear Parameter Complexity
Viaarxiv icon

Liver Lesion Detection from Weakly-labeled Multi-phase CT Volumes with a Grouped Single Shot MultiBox Detector

Add code
Bookmark button
Alert button
Jul 02, 2018
Sang-gil Lee, Jae Seok Bae, Hyunjae Kim, Jung Hoon Kim, Sungroh Yoon

Figure 1 for Liver Lesion Detection from Weakly-labeled Multi-phase CT Volumes with a Grouped Single Shot MultiBox Detector
Figure 2 for Liver Lesion Detection from Weakly-labeled Multi-phase CT Volumes with a Grouped Single Shot MultiBox Detector
Figure 3 for Liver Lesion Detection from Weakly-labeled Multi-phase CT Volumes with a Grouped Single Shot MultiBox Detector
Figure 4 for Liver Lesion Detection from Weakly-labeled Multi-phase CT Volumes with a Grouped Single Shot MultiBox Detector
Viaarxiv icon

An Efficient Approach to Boosting Performance of Deep Spiking Network Training

Add code
Bookmark button
Alert button
Nov 08, 2016
Seongsik Park, Sang-gil Lee, Hyunha Nam, Sungroh Yoon

Figure 1 for An Efficient Approach to Boosting Performance of Deep Spiking Network Training
Figure 2 for An Efficient Approach to Boosting Performance of Deep Spiking Network Training
Figure 3 for An Efficient Approach to Boosting Performance of Deep Spiking Network Training
Figure 4 for An Efficient Approach to Boosting Performance of Deep Spiking Network Training
Viaarxiv icon