Session Details
[3Dp2/3DSAp2]3D/VR/AR Technologies (2)
Thu. Dec 3, 2026 3:30 PM - 5:00 PM JST
Thu. Dec 3, 2026 6:30 AM - 8:00 AM UTC
Thu. Dec 3, 2026 6:30 AM - 8:00 AM UTC
Exhibition and Event Hall (Poster-1)(1st Floor)
[1]Image Reconstruction and Object Classification using Deep Learning in NMF-based Single-Pixel Imaging
*Kenya Sugimoto1, Fan Wang1, Tomoyoshi Ito1, Tomoyoshi Shimobaba1 (1. Chiba University (Japan))
[2]Video-based 3D Gaussian Splat Coding and Immersive Video Rendering for 3D display
*Gwagnsoon Lee1, Hong-Chang Shin1, Hosung Jeon1, Jun Young Jeong1, HyungGon Choo1 (1. ETRI (Korea))
[3]Computational Optical Scanning Holography Using a Line Sensor for Complex Amplitude Reconstruction
*Keisuke Ono1, Kenya Sugimoto1, Yushi Hasegawa1, Fan Wang1, Tomoyoshi Ito1, Tomoyoshi Shimobaba1 (1. Chiba University (Japan))
[4]Lightguide-Type Imaging System for Eye Tracking
*Wen-Kai Lin2, Ying-Pin Tsai1, Yu-Wu Wang1, Wei-Chia Su1 (1. National Changhua University of Education (Taiwan), 2. Feng Chia University (Taiwan))
[5]Interactive 2D/3D Visualization Workflow for Foldable Carton Structures
*Yan Lun Liao1, Tzung Han Lin1 (1. National Taiwan University of Science and Technology (Taiwan))
[6]Complex Hologram Compression Using Mamba
*Shuhei Otsuki1, Chung-Hsuan Huang2, Chau-Jern Cheng2, Fan Wang1, Tomoyoshi Ito1, Tomoyoshi Shimobaba1 (1. Chiba University (Japan), 2. National Taiwan Normal University (Taiwan))
[7]Bi-Stacked Geometric Phase Prism Module for Polarization-Controlled Eyebox Expansion in Holographic Near-Eye Displays
*Erkhembaatar Dashdavaa1, Munkh-Uchral Erdenebat1, Ji-Sub Park1, Hak-Rin Kim1 (1. Kyungpook National University (Korea))
[8]Fast Computing Method for Hologram Data of Blurred Reconstructed Images
*Kotomi Nakanishi1, Prasenjit Paul1, Hiroto Nishimura1, Ying-Pin Tsai2, Boaz Jessie Jackin3, Munekazu Date4, Kenji Yamamoto1 (1. Tokushima University (Japan), 2. National Changhua University of Education (Taiwan), 3. Kochi University (Japan), 4. Tokushima Bunri University (Japan))
[9]3D Gaussian Splatting for Frozen Scene Reconstruction using Linear Camera Array
*Shang-Yu Chou1, Tzung-Han Lin1 (1. National Taiwan University of Science and Technology (Taiwan))
[10]Fresnel Diffraction Based on Matrix Multiplication
*Masato Shotoku1, Fan Wang1, Tomoyoshi Ito1, Tomoyoshi Shimobaba1 (1. Chiba University (Japan))
[11]Polygon-Based Hologram Generation via Monocular Depth Estimation from a 2D Image
*Yoshihiro Mitani1, Tomoyoshi Shimobaba1, Tomoyoshi Ito1, Fan Wang1 (1. Chiba University (Japan))
[12]Deep Reinforcement Learning Using a Diffractive Deep Neural Network as a Q-Network
*Soju Ochiai1, Ikuo Hoshi2, Yasuyuki Ichihashi2, Fan Wang1, Tomoyoshi Ito1, Tomoyoshi Shimobaba1 (1. Chiba University (Japan), 2. National Institute of Information and Communications Technology (Japan))
[13]Suppressing Ringing Artifacts in Double-Phase Holograms via Wavelet Decomposition
*Masato Goto1, Tomoyoshi Ito1, Tomoyoshi Shimobaba1, Fan Wang1 (1. Chiba University (Japan))
[14]Gray-level Decomposed Multi-layer Phase-only MGSA
*Ling-Dong Tsau1, Yin-Shuo Chang1, Pei-Wei Liang1, Chien-Yu Chen1 (1. NTUST (Taiwan))
[15]Computer Generated Holograms Based on Complex Deep Learning Networks for Long Distance Image Reconstruction
Ching-Hsiang Yi1, *Hsuan-Ting Chang1 (1. National Yunlin University of Science and Technology (Taiwan))
[16]Focusing Characteristics of the Eye for Holographic Images and Real Objects in a Holographic Contact Lens Display
*Ryuya Shimada1, Haruki Mizushina1,2, Yasuhiro Takaki3, Kenji Yamamoto2 (1. Shinshu University (Japan), 2. Tokushima University (Japan), 3. Tokyo University of Agriculture and Technology (Japan))
