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Jong-You Kim

Yonsei University · Computer Science

About the Lab

Professor Jong-You Kim's research lab specializes in deep learning-based image quality assessment, with a strong focus on developing convolutional neural network (CNN)-driven models for both full-reference and no-reference image quality evaluation. The lab emphasizes human visual system-inspired approaches, integrating psychological vision science with data-driven deep learning to create perceptually aligned quality metrics. Key research directions include end-to-end learning of image quality from subjective data, overcoming data scarcity in no-reference IQA, and designing novel loss functions and network architectures that account for human perception and error patterns in visual tasks.

image quality assessmentdeep learningconvolutional neural networkshuman visual systemno-reference IQA

Research Overview

Papers
43
Total Citations
1,933
Papers (5y)
17
Primary Field
Computer Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
17total
2021
2022
2023
2024
2026
Citations per year (5y)
171total
20212022202320242026

Selected Papers

15
1
Article|465 citations·2016
Fully Deep Blind Image Quality Predictor
Jongyoo Kim, Sanghoon Lee
SJR Q1IEEE Journal of Selected Topics in Signal Processing

In general, owing to the benefits obtained from original information, full-reference image quality assessment (FR-IQA) achieves relatively higher prediction accuracy than no-reference image quality assessment (NR-IQA). By fully utilizing reference images, conventional FR-IQA methods have been investigated to produce objective scores that are close to subjective scores. In contrast, NR-IQA does not consider reference images; thus, its performance is inferior to that of FR-IQA. To alleviate this a

Computer Vision and Pattern RecognitionComputer Science
2
Article|338 citations·2018
Deep CNN-Based Blind Image Quality Predictor
Jongyoo Kim, Duc Chien Nguyen, Sanghoon Lee
SJR Q1IEEE Transactions on Neural Networks and Learning Systems

Image recognition based on convolutional neural networks (CNNs) has recently been shown to deliver the state-of-the-art performance in various areas of computer vision and image processing. Nevertheless, applying a deep CNN to no-reference image quality assessment (NR-IQA) remains a challenging task due to critical obstacles, i.e., the lack of a training database. In this paper, we propose a CNN-based NR-IQA framework that can effectively solve this problem. The proposed method-deep image qualit

Computer Vision and Pattern RecognitionComputer Science
3
Article|285 citations·2017
Deep Convolutional Neural Models for Picture-Quality Prediction: Challenges and Solutions to Data-Driven Image Quality Assessment
Jongyoo Kim, Hui Zeng, Deepti Ghadiyaram, Sanghoon Lee, Lei Zhang, Alan C. Bovik
SJR Q1IEEE Signal Processing Magazine

Convolutional neural networks (CNNs) have been shown to deliver standout performance on a wide variety of visual information processing applications. However, this rapidly developing technology has only recently been applied with systematic energy to the problem of picture-quality prediction, primarily because of limitations imposed by a lack of adequate ground-truth human subjective data. This situation has begun to change with the development of promising data-gathering methods that are drivin

Computer Vision and Pattern RecognitionComputer Science
4
Article|272 citations·2017
Deep Learning of Human Visual Sensitivity in Image Quality Assessment Framework
Jongyoo Kim, Sanghoon Lee

Since human observers are the ultimate receivers of digital images, image quality metrics should be designed from a human-oriented perspective. Conventionally, a number of full-reference image quality assessment (FR-IQA) methods adopted various computational models of the human visual system (HVS) from psychological vision science research. In this paper, we propose a novel convolutional neural networks (CNN) based FR-IQA model, named Deep Image Quality Assessment (DeepQA), where the behavior of

Computer Vision and Pattern RecognitionComputer Science
5
Book Chapter|125 citations·2018
Deep Video Quality Assessor: From Spatio-Temporal Visual Sensitivity to a Convolutional Neural Aggregation Network
Woojae Kim, Jongyoo Kim, Sewoong Ahn, Jinwoo Kim, Sanghoon Lee
SJR Q2Lecture notes in computer science
Computer Vision and Pattern RecognitionComputer Science
6
Article|84 citations·2017
Blind Deep S3D Image Quality Evaluation via Local to Global Feature Aggregation
Heeseok Oh, Sewoong Ahn, Jongyoo Kim, Sanghoon Lee
SJR Q1IEEE Transactions on Image Processing

Previously, no-reference (NR) stereoscopic 3D (S3D) image quality assessment (IQA) algorithms have been limited to the extraction of reliable hand-crafted features based on an understanding of the insufficiently revealed human visual system or natural scene statistics. Furthermore, compared with full-reference (FR) S3D IQA metrics, it is difficult to achieve competitive quality score predictions using the extracted features, which are not optimized with respect to human opinion. To cope with thi

Computer Vision and Pattern RecognitionComputer Science
7
Article|61 citations·2021
ADNet: Leveraging Error-Bias Towards Normal Direction in Face Alignment
Yangyu Huang, Hao Yang, Chong Li, Jongyoo Kim, Fangyun Wei
2021 IEEE/CVF International Conference on Computer Vision (ICCV)

The recent progress of CNN has dramatically improved face alignment performance. However, few works have paid attention to the error-bias with respect to error distribution of facial landmarks. In this paper, we investigate the error-bias issue in face alignment, where the distributions of landmark errors tend to spread along the tangent line to landmark curves. This error-bias is not trivial since it is closely connected to the ambiguous landmark labeling task. Inspired by this observation, we

Computer Vision and Pattern RecognitionComputer Science
8
Article|45 citations·2022
MPS-NeRF: Generalizable 3D Human Rendering From Multiview Images
Xiangjun Gao, Jiaolong Yang, Jongyoo Kim, Sida Peng, Zicheng Liu, Xin Tong
SJR Q1IEEE Transactions on Pattern Analysis and Machine Intelligence

There has been rapid progress recently on 3D human rendering, including novel view synthesis and pose animation, based on the advances of neural radiance fields (NeRF). However, most existing methods focus on person-specific training and their training typically requires multi-view videos. This article deals with a new challenging task - rendering novel views and novel poses for a person unseen in training, using only multiview still images as input without videos. For this task, we propose a si

Computer Vision and Pattern RecognitionComputer Science
9
Article|32 citations·2018
Multiple Level Feature-Based Universal Blind Image Quality Assessment Model
Jongyoo Kim, Duc Chien Nguyen, Sewoong Ahn, Chong Luo, Sanghoon Lee

The direct use of a deep convolutional neural network (CNN) in no-reference image quality assessment (NR-IQA) usually struggles for a good performance due to a lack of training data, which can be alleviated by transfer learning. However, depending on the similarity between the source and target tasks, the final performance differs vastly. In particular, various kinds of distortion types exist in IQA, which requires different kinds of features to predict visual quality. In this paper, to make the

Computer Vision and Pattern RecognitionComputer Science
10
Article|27 citations·2017
Enhancement of Visual Comfort and Sense of Presence on Stereoscopic 3D Images
Heeseok Oh, Jongyoo Kim, Jinwoo Kim, Taewan Kim, Sanghoon Lee, Alan C. Bovik
SJR Q1IEEE Transactions on Image Processing

Conventional stereoscopic 3D (S3D) displays do not provide accommodation depth cues of the 3D image or video contents being viewed. The sense of content depths is thus limited to cues supplied by motion parallax (for 3D video), stereoscopic vergence cues created by presenting left and right views to the respective eyes, and other contextual and perspective depth cues. The absence of accommodation cues can induce two kinds of accommodation vergence mismatches (AVM) at the fixation and peripheral

Media TechnologyEngineering
11
Article|23 citations·2018
Deep Visual Saliency on Stereoscopic Images
Duc Chien Nguyen, Jongyoo Kim, Heeseok Oh, Haksub Kim, Weisi Lin, Sanghoon Lee
SJR Q1IEEE Transactions on Image Processing

Visual saliency on stereoscopic 3D (S3D) images has been shown to be heavily influenced by image quality. Hence, this dependency is an important factor in image quality prediction, image restoration and discomfort reduction, but it is still very difficult to predict such a nonlinear relation in images. In addition, most algorithms specialized in detecting visual saliency on pristine images may unsurprisingly fail when facing distorted images. In this paper, we investigate a deep learning scheme

Computer Vision and Pattern RecognitionComputer Science
12
Article|22 citations·2017
Deep blind image quality assessment by employing FR-IQA
Jongyoo Kim, Sanghoon Lee

In this paper, we propose a convolutional neural network (CNN)-based no-reference image quality assessment (NR-IQA). Though deep learning has yielded superior performance in a number of computer vision studies, applying the deep CNN to the NR-IQA framework is not straightforward, since we face a few critical problems: 1) lack of training data; 2) absence of local ground truth targets. To alleviate these problems, we employ the full-reference image quality assessment (FR-IQA) metrics as intermedi

Computer Vision and Pattern RecognitionComputer Science
13
Article|20 citations·2022
Single-Image 3-D Reconstruction: Rethinking Point Cloud Deformation
Duc Chien Nguyen, Seonghwa Choi, Woojae Kim, Jongyoo Kim, Heeseok Oh, Jiwoo Kang, Sanghoon Lee
SJR Q1IEEE Transactions on Neural Networks and Learning Systems

Single-image 3-D reconstruction has long been a challenging problem. Recent deep learning approaches have been introduced to this 3-D area, but the ability to generate point clouds still remains limited due to inefficient and expensive 3-D representations, the dependency between the output and the number of model parameters, or the lack of a suitable computing operation. In this article, we present a novel deep-learning-based method to reconstruct a point cloud of an object from a single still i

Computer Vision and Pattern RecognitionComputer Science
14
Article|18 citations·2017
Quality Assessment of Perceptual Crosstalk on Two-View Auto-Stereoscopic Displays
Jongyoo Kim, Taewan Kim, Sanghoon Lee, Alan C. Bovik
SJR Q1IEEE Transactions on Image Processing

Crosstalk is one of the most severe factors affecting the perceived quality of stereoscopic 3D images. It arises from a leakage of light intensity between multiple views, as in auto-stereoscopic displays. Well-known determinants of crosstalk include the co-location contrast and disparity of the left and right images, which have been dealt with in prior studies. However, when a natural stereo image that contains complex naturalistic spatial characteristics is viewed on an auto-stereoscopic displa

Computer Vision and Pattern RecognitionComputer Science
15
Article|17 citations·2021
Learning High-Fidelity Face Texture Completion without Complete Face Texture
Jongyoo Kim, Jiaolong Yang, Xin Tong
2021 IEEE/CVF International Conference on Computer Vision (ICCV)

For face texture completion, previous methods typically use some complete textures captured by multiview imaging systems or 3D scanners for supervised learning. This paper deals with a new challenging problem - learning to complete invisible texture in a single face image without using any complete texture. We simply leverage a large corpus of face images of different subjects (e. g., FFHQ) to train a texture completion model in an unsupervised manner. To achieve this, we propose DSD-GAN, a nove

Computer Vision and Pattern RecognitionComputer Science

Research Areas

Computer Vision and Pattern RecognitionMedia TechnologyHuman-Computer InteractionControl and Systems EngineeringComputational MechanicsCognitive Neuroscience

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