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Jie CHEN, Prof
Associate Professor
,
Department of Computer Science
https://orcid.org/0000-0001-8419-4620
Email
chenjie
hkbu.edu
hk
2013
2025
Research activity per year
Overview
Fingerprint
Network
Projects / Grants
(2)
Research Output
(66)
Activities
(1)
Press/Media
(23)
Similar Scholars
(5)
Supervised Work
(3)
Fingerprint
Dive into the research topics where Jie CHEN is active. Topic labels come from the works of this scholar. Together they form a unique fingerprint.
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Computer Science
super resolution
69%
Regularization
69%
Hyperspectral Image
69%
Depth Estimation
69%
Experimental Result
58%
Neural Radiance Field
55%
Motion Capture
55%
Image-Based Rendering
48%
RGB Image
46%
Virtual Reality
41%
Learning Framework
41%
Volume Rendering
36%
Embedding Space
34%
Pose Estimation
32%
Depth Information
32%
Convolution
31%
Computational Efficiency
30%
Image Reconstruction
30%
Reconstruction Algorithm
27%
Regularization Term
27%
Deformation Field
27%
Deep Learning Method
27%
Explicit Representation
27%
Telepresence
27%
Signed Distance
27%
Image Synthesis
27%
Artificial Intelligence
27%
Dark Channel Prior
27%
Convolutional Neural Network
27%
de-noising
20%
Feature Fusion
20%
Synthetic Datasets
20%
High Dynamic Range Imaging
20%
Human Motion
20%
Superpixel Segmentation
20%
Superpixel
20%
Image Sequence
20%
Level Consistency
18%
Intrinsic Property
18%
Superior Performance
17%
Visual Feature
16%
Residual Neural Network
16%
3d Reconstruction
15%
Coefficient Alpha
13%
Engineered Key
13%
Comparative Evaluation
13%
Scene Modeling
13%
Handle Occlusion
13%
Basic Assumption
13%
Local Statistic
13%
Keyphrases
Light Field
100%
Novel View Synthesis
67%
Light Field Imaging
64%
State-of-the-art Techniques
51%
Radiance Fields
41%
Human Avatar
41%
Attention-guided
34%
Learning-based
32%
Learning Strategies
32%
Light Field Capture
30%
Depth Estimation
29%
Multiplane Image
27%
Angular Regularization
27%
High Dynamic Range Imaging
27%
Tensorial
27%
Cross-channel
27%
Explicit Surfaces
27%
Physics-informed Neural Networks
27%
Neural Radiance Field (NeRF)
26%
Challenging Problems
25%
Embedding Space
25%
Immersive
24%
Cross-modal
24%
Diffusion Model
24%
Synthesis Methods
23%
Parallax
23%
Large Baseline
23%
Hyperspectral Image Reconstruction
23%
Aesthetic Style
20%
Attention Module
20%
Coded Aperture
20%
Light Field Reconstruction
20%
Movement Sequence
20%
Light Field Synthesis
20%
Benchmark Dataset
19%
Partial Differential Equations
19%
Masked Autoencoder
18%
Overture
18%
Violin Concertos
18%
Reconstruction Accuracy
18%
Severe Occlusion
18%
Motion Capture
18%
Hyperspectral
18%
Multi-view Images
18%
Fusion Module
18%
Image Reconstruction
17%
High-resolution
17%
Spatial Super-resolution
17%
Inference Speed
17%
Domain Translation
16%