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Hiromasa Oku
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2020 – today
- 2024
- [j20]Yutong Gu, Hiromasa Oku
, Masahiro Todoh
:
American Sign Language Recognition and Translation Using Perception Neuron Wearable Inertial Motion Capture System. Sensors 24(2): 453 (2024) - 2023
- [j19]Hiroyuki Ogihara
, Yuki Funato, Hiromasa Oku
:
Proposal for a Distraction Technique Using Two-Screen Projection for Stress Relief in Children With Medical Complexity. IEEE Access 11: 105749-105760 (2023) - [c28]Yuito Hirohashi
, Hiromasa Oku
:
Aerial Display Method Using a Flying Screen with an IR Marker and Long Range Dynamic Projection Mapping. SIGGRAPH ASIA Posters 2023: 2:1-2:2 - [c27]Masatoshi Iuchi, Yuito Hirohashi, Hiromasa Oku
:
Proposal for an aerial display using dynamic projection mapping on a distant flying screen. VR 2023: 603-608 - [c26]Yuki Funato, Suzuno Hayashi, Hiromasa Oku
:
Edible Light Pipe Made of Candy. VR Workshops 2023: 859-860 - 2022
- [j18]Hiromasa Oku
, Miko Sato, Yuki Funato:
Edible Retroreflector Made of Candy. IEEE Access 10: 24749-24758 (2022) - [j17]Masatoshi Ishikawa, Idaku Ishii
, Hiromasa Oku, Akio Namiki
, Yuji Yamakawa, Tomohiko Hayakawa:
Special Issue on High-Speed Vision and its Applications. J. Robotics Mechatronics 34(5): 911 (2022) - [j16]Hiromu Kijima, Hiromasa Oku:
Structured Light Field by Two Projectors Placed in Parallel for High-Speed and Precise 3D Feedback. J. Robotics Mechatronics 34(5): 1096-1110 (2022) - [j15]Kazuki Yamato, Masatoshi Iuchi, Hiromasa Oku:
High-Speed and Low-Latency 3D Fluorescence Imaging for Robotic Microscope. J. Robotics Mechatronics 34(5): 1164-1174 (2022) - 2021
- [j14]Shino Higuchi, Hiromasa Oku
:
Wide angular range dynamic projection mapping method applied to drone-based avatar robot. Adv. Robotics 35(11): 675-684 (2021) - [c25]Shino Higuchi, Hiromasa Oku:
Wide Angular Range Dynamic Projection Mapping Method Applied to the Projection on a Flying Drone. SIGGRAPH Posters 2021: 22:1-22:2 - 2020
- [j13]Tomoaki Mashimo
, Shunsuke Izuhara
, Shiro Arai, Zhong Zhang
, Hiromasa Oku
:
High-Speed Visual Feedback Control of Miniature Rotating Mirror System Using a Micro Ultrasonic Motor. IEEE Access 8: 38546-38553 (2020) - [j12]Kazuki Yamato
, Hiroyuki Chiba, Hiromasa Oku
:
High Speed Three Dimensional Tracking of Swimming Cell by Synchronous Modulation Between TeCE Camera and TAG Lens. IEEE Robotics Autom. Lett. 5(2): 1907-1914 (2020) - [c24]Hiromasa Oku, Kazuki Yamato, Yusuke Tanaka, Keita Yasutomi, Shoji Kawahito:
Simulfocus imaging: quasi-simultaneous multi-focus imaging using Lock-in Pixel imager and TAG lens. SIGGRAPH Emerging Technologies 2020: 18:1-18:2
2010 – 2019
- 2019
- [j11]Kazuki Yamato
, Toshihiko Yamashita, Hiroyuki Chiba, Hiromasa Oku
:
Fast Volumetric Feedback under Microscope by Temporally Coded Exposure Camera. Sensors 19(7): 1606 (2019) - [c23]Miyu Nomura, Hiromasa Oku:
Edible Lens Made of Agar. VR 2019: 1104-1105 - [c22]Miko Sato, Yuki Funato, Hiromasa Oku:
Edible Retroreflector Made of Candy. VR 2019: 1146-1147 - 2018
- [j10]Hiromasa Oku
, Takahiro Uji, Yiting Zhang, Kumi Shibahara:
Edible fiducial marker made of edible retroreflector. Comput. Graph. 77: 156-165 (2018) - [j9]Kazuki Yamato
, Hiroyuki Chiba, Toshihiko Yamashita, Hiromasa Oku
:
1-ms Three-Dimensional Feedback Microscope With 69-kHz Synchronous Modulation of Focal Position and Illumination. IEEE Robotics Autom. Lett. 3(3): 1978-1984 (2018) - [c21]Kazuki Yamato, Toshihiko Yamashita, Hiroyuki Chiba, Hiromasa Oku:
Temporally Coded Exposure Camera for High-Speed Feedback of Microscopic 3D Information. ROBIO 2018: 958-963 - [c20]Hiromasa Oku, Miyu Nomura, Kumi Shibahara, Akihiro Obara:
Edible projection mapping. SIGGRAPH ASIA Emerging Technologies 2018: 2:1-2:2 - 2017
- [c19]Takahiro Uji, Yiting Zhang, Hiromasa Oku
:
Edible retroreflector. VRST 2017: 5:1-5:8 - 2016
- [j8]Akihiro Obara, Xu Yang, Hiromasa Oku
:
Structured Light Field Generated by Two Projectors for High-Speed Three Dimensional Measurement. J. Robotics Mechatronics 28(4): 523-532 (2016) - [j7]Tomohiro Sueishi, Hiromasa Oku
, Masatoshi Ishikawa
:
Lumipen 2: Dynamic Projection Mapping with Mirror-Based Robust High-Speed Tracking against Illumination Changes. Presence Teleoperators Virtual Environ. 25(4): 299-321 (2016) - [j6]Koseki J. Kobayashi-Kirschvink, Hiromasa Oku
:
Design Principles of a High-Speed Omni-Scannable Gaze Controller. IEEE Robotics Autom. Lett. 1(2): 836-843 (2016) - [c18]Kazuhisa Iida, Hiromasa Oku
:
Saccade Mirror 3: High-speed gaze controller with ultra wide gaze control range using triple rotational mirrors. ICRA 2016: 624-629 - [p1]Masatoshi Ishikawa
, Idaku Ishii, Yutaka Sakaguchi
, Makoto Shimojo, Hiroyuki Shinoda
, Hirotsugu Yamamoto, Takashi Komuro, Hiromasa Oku
, Yutaka Nakajima
, Yoshihiro Watanabe:
Dynamic Information Space Based on High-Speed Sensor Technology. Human-Harmonized Information Technology (1) 2016: 97-136 - 2015
- [j5]Kohei Okumura, Keiko Yokoyama, Hiromasa Oku
, Masatoshi Ishikawa
:
1 ms Auto Pan-Tilt - video shooting technology for objects in motion based on Saccade Mirror with background subtraction. Adv. Robotics 29(7): 457-468 (2015) - [c17]Tomohiro Sueishi, Hiromasa Oku
, Masatoshi Ishikawa
:
Mirror-based high-speed gaze controller calibration with optics and illumination control. IROS 2015: 3064-3070 - [c16]Tomohiro Sueishi, Hiromasa Oku
, Masatoshi Ishikawa
:
Robust high-speed tracking against illumination changes for dynamic projection mapping. VR 2015: 97-104 - 2014
- [j4]Taku Senoo, Yuji Yamakawa, Yoshihiro Watanabe, Hiromasa Oku
, Masatoshi Ishikawa
:
High-Speed Vision and its Application Systems. J. Robotics Mechatronics 26(3): 287-301 (2014) - 2013
- [c15]Kohei Okumura, Hiromasa Oku
, Masatoshi Ishikawa
:
Acitve projection ar using high-speed optical axis control and appearance estimation algorithm. ICME 2013: 1-6 - 2012
- [c14]Kohei Okumura, Hiromasa Oku
, Masatoshi Ishikawa
:
Lumipen: Projection-Based Mixed Reality for Dynamic Objects. ICME 2012: 699-704 - [c13]Hiroki Deguchi, Hiromasa Oku
, Masatoshi Ishikawa
:
Arbitrarily focused video using high-speed liquid lens. SIGGRAPH ASIA Posters 2012: 10 - 2011
- [c12]Kohei Okumura, Hiromasa Oku
, Masatoshi Ishikawa
:
High-speed gaze controller for millisecond-order pan/tilt camera. ICRA 2011: 6186-6191 - 2010
- [c11]Hiromasa Oku
, Masatoshi Ishikawa
:
High-speed liquid lens for computer vision. ICRA 2010: 2643-2648
2000 – 2009
- 2008
- [c10]Soshiro Makise, Hiromasa Oku, Masatoshi Ishikawa
:
Serial Algorithm for high-speed autofocusing of cells using Depth From Diffraction (DFDi) method. ICRA 2008: 3124-3129 - [c9]Takahiko Ishikawa, Hiromasa Oku
, Masatoshi Ishikawa
:
Mobile microscope: a new concept for hand-held microscopes with image stabilization. ICRA 2008: 3130-3134 - [c8]Takeshi Hasegawa, Naoko Ogawa, Hiromasa Oku
, Masatoshi Ishikawa
:
A new framework for microrobotic control of motile cells based on high-speed tracking and focusing. ICRA 2008: 3964-3969 - 2007
- [j3]Naoko Ogawa, Hiromasa Oku
, Koichi Hashimoto, Masatoshi Ishikawa:
Trajectory Planning of Motile Cell for Microrobotic Applications. J. Robotics Mechatronics 19(2): 190-197 (2007) - 2006
- [c7]Naoko Ogawa, Hiromasa Oku, Koichi Hashimoto, Masatoshi Ishikawa:
Evaluation and Suppression of Overrun of Microorganisms using Dynamics Model for Microrobotic Application. IAS 2006: 1015-1024 - [c6]Kiyonori Takahashi, Naoko Ogawa, Hiromasa Oku, Koichi Hashimoto
:
Organized Motion Control of a lot of Microorganisms using Visual Feedback. ICRA 2006: 1408-1413 - [c5]Hiromasa Oku, Koichi Hashimoto
, Masatoshi Ishikawa:
High-speed Focusing of Cells using Depth-from-diffraction Method. ICRA 2006: 3636-3641 - [c4]Anchelee Davies, Naoko Ogawa, Hiromasa Oku
, Koichi Hashimoto
, Masatoshi Ishikawa:
Visualization and Estimation of Contact Stimuli using Living Microorganisms. ROBIO 2006: 445-450 - 2005
- [j2]Naoko Ogawa, Hiromasa Oku, Koichi Hashimoto
, Masatoshi Ishikawa:
Microrobotic Visual Control of Motile Cells Using High-Speed Tracking System. IEEE Trans. Robotics 21(4): 704-712 (2005) - [c3]Naoko Ogawa, Hiromasa Oku, Koichi Hashimoto
, Masatoshi Ishikawa:
Dynamics Model of Paramecium Galvanotaxis for Microrobotic Application. ICRA 2005: 1246-1251 - 2004
- [j1]Hiromasa Oku
, Idaku Ishii, Masatoshi Ishikawa:
A microscopic visual feedback system. Syst. Comput. Jpn. 35(13): 71-79 (2004) - [c2]Naoko Ogawa, Hiromasa Oku, Koichi Hashimoto, Masatoshi Ishikawa:
Motile Cell Galvanotaxis Control using High-speed Tracking System. ICRA 2004: 1646-1651 - [c1]Naoko Ogawa, Koichi Hashimoto, Masatoshi Ishikawa, Hiromasa Oku:
Single-Cell Level Continuous Observation of Microorganism Galvanotaxis Using High-Speed Vision. ISBI 2004: 1331-1334
Coauthor Index
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last updated on 2025-01-21 00:19 CET by the dblp team
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