| 2025 | SiggraphA | HoverCanvas: Aerial Display Based on a Flying Screen and 100 m Long Range Dynamic Projection. | Shimpei Yamamoto, Hiromasa Oku |
| 2023 | VR | Edible Light Pipe Made of Candy. | Yuki Funato, Suzuno Hayashi, Hiromasa Oku |
| 2023 | VR | Proposal for an aerial display using dynamic projection mapping on a distant flying screen. | Masatoshi Iuchi, Yuito Hirohashi, Hiromasa Oku |
| 2023 | SiggraphA | Aerial Display Method Using a Flying Screen with an IR Marker and Long Range Dynamic Projection Mapping. | Yuito Hirohashi, Hiromasa Oku |
| 2021 | SIGGRAPH | Wide Angular Range Dynamic Projection Mapping Method Applied to the Projection on a Flying Drone. | Shino Higuchi, Hiromasa Oku |
| 2020 | SIGGRAPH | Simulfocus imaging: quasi-simultaneous multi-focus imaging using Lock-in Pixel imager and TAG lens. | Hiromasa Oku, Kazuki Yamato, Yusuke Tanaka, Keita Yasutomi, Shoji Kawahito |
| 2019 | VR | Edible Lens Made of Agar. | Miyu Nomura, Hiromasa Oku |
| 2019 | VR | Edible Retroreflector Made of Candy. | Miko Sato, Yuki Funato, Hiromasa Oku |
| 2018 | SiggraphA | Edible projection mapping. | Hiromasa Oku, Miyu Nomura, Kumi Shibahara, Akihiro Obara |
| 2017 | VRST | Edible retroreflector. | Takahiro Uji, Yiting Zhang, Hiromasa Oku |
| 2016 | ICRA | Saccade Mirror 3: High-speed gaze controller with ultra wide gaze control range using triple rotational mirrors. | Kazuhisa Iida, Hiromasa Oku |
| 2015 | IROS | Mirror-based high-speed gaze controller calibration with optics and illumination control. | Tomohiro Sueishi, Hiromasa Oku, Masatoshi Ishikawa |
| 2015 | VR | Robust high-speed tracking against illumination changes for dynamic projection mapping. | Tomohiro Sueishi, Hiromasa Oku, Masatoshi Ishikawa |
| 2012 | SIGGRAPH | Arbitrarily focused video using high-speed liquid lens. | Hiroki Deguchi, Hiromasa Oku, Masatoshi Ishikawa |
| 2011 | ICRA | High-speed gaze controller for millisecond-order pan/tilt camera. | Kohei Okumura, Hiromasa Oku, Masatoshi Ishikawa |
| 2010 | ICRA | High-speed liquid lens for computer vision. | Hiromasa Oku, Masatoshi Ishikawa |
| 2008 | ICRA | A new framework for microrobotic control of motile cells based on high-speed tracking and focusing. | Takeshi Hasegawa, Naoko Ogawa, Hiromasa Oku, Masatoshi Ishikawa |
| 2008 | ICRA | Mobile microscope: a new concept for hand-held microscopes with image stabilization. | Takahiko Ishikawa, Hiromasa Oku, Masatoshi Ishikawa |
| 2008 | ICRA | Serial Algorithm for high-speed autofocusing of cells using Depth From Diffraction (DFDi) method. | Soshiro Makise, Hiromasa Oku, Masatoshi Ishikawa |
| 2006 | IAS | Evaluation and Suppression of Overrun of Microorganisms using Dynamics Model for Microrobotic Application. | Naoko Ogawa, Hiromasa Oku, Koichi Hashimoto, Masatoshi Ishikawa |
| 2006 | ICRA | High-speed Focusing of Cells using Depth-from-diffraction Method. | Hiromasa Oku, Koichi Hashimoto, Masatoshi Ishikawa |
| 2006 | ICRA | Organized Motion Control of a lot of Microorganisms using Visual Feedback. | Kiyonori Takahashi, Naoko Ogawa, Hiromasa Oku, Koichi Hashimoto |
| 2005 | ICRA | Dynamics Model of Paramecium Galvanotaxis for Microrobotic Application. | Naoko Ogawa, Hiromasa Oku, Koichi Hashimoto, Masatoshi Ishikawa |
| 2004 | ICRA | Motile Cell Galvanotaxis Control using High-speed Tracking System. | Naoko Ogawa, Hiromasa Oku, Koichi Hashimoto, Masatoshi Ishikawa |