default search action
Hiroaki Yano
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [c60]Yichen Dong, Andrijanto, Hiroaki Yano, Makoto Itoh:
Elderly Pedestrian-Crossing Strategy When Perceiving an Autonomous Vehicle in a Shared Space. ICHMS 2024: 1-6 - 2023
- [c59]Hiroaki Yano, Tomohiro Yendo:
Wide-viewing-zone Light-field Capturing Using Turtleback Convex Reflector. Imaging Sensors and Systems 2023: 1-11 - [c58]Takuma Yabe, Hiroaki Yano:
Haptic Interface for Proximity Object Recognition Considering Hand Structure. ITSC 2023: 1622-1628 - 2022
- [c57]Andrijanto, Zhangyijing Chen, Takuro Kodama, Hiroaki Yano, Makoto Itoh:
Application of LargeSpace for Investigating Pedestrians' Behaviors when Interacting with Autonomous Vehicles in Shared Spaces. VR Workshops 2022: 97-100 - 2021
- [c56]Takuma Yabe, Hiroaki Yano:
Haptic interface for presenting enveloping force from remote obstacles in a personal vehicle. ICHMS 2021: 1-4 - [c55]Hiroaki Yano, Tomohiro Yendo:
Kaleidoscopic Display: easy-to-make light-field display. SIGGRAPH ASIA Posters 2021: 36:1-36:2 - 2020
- [c54]Takeshi Tanabe, Hiroaki Yano, Hiroshi Endo, Shuichi Ino, Hiroo Iwata:
Motion Guidance Using Translational Force and Torque Feedback by Induced Pulling Illusion. EuroHaptics 2020: 471-479
2010 – 2019
- 2019
- [c53]Hikaru Takatori, Masashi Hiraiwa, Hiroaki Yano, Hiroo Iwata:
Large-Scale Projection-Based Immersive Display: The Design and Implementation of LargeSpace. VR 2019: 557-565 - [c52]Alberto Boem, Yu-uki Enzaki, Hiroaki Yano, Hiroo Iwata:
Human Perception of a Haptic Shape-changing Interface with Variable Rigidity and Size. VR 2019: 858-859 - 2018
- [j11]Takeshi Tanabe, Hiroaki Yano, Hiroo Iwata:
Evaluation of the Perceptual Characteristics of a Force Induced by Asymmetric Vibrations. IEEE Trans. Haptics 11(2): 220-231 (2018) - [c51]Takeshi Tanabe, Hiroaki Yano, Hiroo Iwata:
Induced Pulling Sensation by Synthesis of Frequency Component for Voice-Coil Type Vibrators. AsiaHaptics 2018: 27-32 - [c50]Saizoh Kojima, Hiroaki Yano, Hiroo Iwata:
Development of a Rigidity and Volume Control Module Using a Balloon Filled with Dilatant Fluid. AsiaHaptics 2018: 187-192 - [c49]Hiroaki Yano, Tomohiro Yendo:
Full-parallax spherical light field display using mirror array. SD&A 2018: 1-5 - [c48]Hiroaki Yano, Tomohiro Yendo:
Spherical full-parallax light-field display using ball of fly-eye mirror. SIGGRAPH Emerging Technologies 2018: 16:1-16:2 - [c47]Kosuke Sato, Keita Watanabe, Hiroaki Yano, Hiroo Iwata:
Motion recognition for automatic control of a block machine. VRST 2018: 107:1-107:2 - 2017
- [j10]Kosuke Sato, Keita Watanabe, Shuichi Mizuno, Masayoshi Manabe, Hiroaki Yano, Hiroo Iwata:
Development and assessment of a block machine for volleyball attack training. Adv. Robotics 31(21): 1144-1156 (2017) - [j9]Naoki Takizawa, Hiroaki Yano, Hiroo Iwata, Yukio Oshiro, Nobuhiro Ohkohchi:
Encountered-Type Haptic Interface for Representation of Shape and Rigidity of 3D Virtual Objects. IEEE Trans. Haptics 10(4): 500-510 (2017) - [c46]Akitoshi Tomita, Etsuko T. Harada, Kozue Miyashiro, Satoshi Ando, Maito Ohmori, Hiroaki Yano:
Gradually ascending sound with accelerating automatic driving vehicle might change passengers' tension or anxiety: analysis of biometrical index. CogSci 2017 - [c45]Takeshi Tanabe, Hiroaki Yano, Hiroo Iwata:
Temporal characteristics of non-grounded translational force and torque display using asymmetric vibrations. WHC 2017: 310-315 - [c44]Akitoshi Tomita, Etsuko T. Harada, Satoshi Ando, Kozue Miyashiro, Maito Ohmori, Hiroaki Yano:
On-time Measurement of Subjective Anxiety of a Passenger in an Autonomous Vehicle: Gradually Changing Sounds Decreases Anxiety of Passenger. HCI (5) 2017: 209-219 - [c43]Kosuke Sato, Keita Watanabe, Shuichi Mizuno, Masayoshi Manabe, Hiroaki Yano, Hiroo Iwata:
Development of a block machine for volleyball attack training. ICRA 2017: 1036-1041 - 2016
- [c42]Shun Takanaka, Hiroaki Yano, Hiroo Iwata:
3DOF Multitouch Haptic Interface with Movable Touchscreen. AsiaHaptics 2016: 55-61 - [c41]Takeshi Tanabe, Hiroaki Yano, Hiroo Iwata:
Proposal and Implementation of Non-grounded Translational Force and Torque Display Using Two Vibration Speakers. AsiaHaptics 2016: 187-192 - [c40]Takayuki Ishikawa, Hiroaki Yano, Hiroo Iwata:
Visual Haptic Interface by Using 2-DOF Indirect Haptic Interface. AsiaHaptics 2016: 467-472 - [c39]Takeshi Tanabe, Hiroaki Yano, Hiroo Iwata:
Properties of proprioceptive sensation with a vibration speaker-type non-grounded haptic interface. HAPTICS 2016: 21-26 - 2015
- [c38]Naoki Takizawa, Hiroaki Yano, Hiroo Iwata, Yukio Oshiro, Nobuhiro Ohkohchi:
Development of Encountered-type Haptic Interface that can Independently Control Volume and Rigidity of 3D Virtual Object. ICAT-EGVE 2015: 17-24 - [c37]Hiroaki Yano, Shoichiro Taniguchi, Hiroo Iwata:
Shape and friction recognition of 3D virtual objects by using 2-DOF indirect haptic interface. World Haptics 2015: 202-207 - [c36]Shun Takanaka, Hiroaki Yano, Hiroo Iwata:
Multitouch haptic interface with movable touch screen. SIGGRAPH Asia Haptic Media And Contents Design 2015: 13:1-13:3 - 2014
- [c35]Yu-uki Enzaki, Hiroaki Yano, Yukio Oshiro, Jaejeong Kim, Sangtae Kim, Hiroo Iwata, Nobuhiro Ohkohchi:
Development of the Haptic Device for a Hepatectomy Simulator. AsiaHaptics 2014: 231-235 - [c34]Kosuke Sato, Yuki Hashimoto, Hiroaki Yano, Hiroo Iwata:
Development of Ball Game Defense Robot Based on Physical Properties and Motion of Human. AsiaHaptics 2014: 261-265 - [c33]Hikaru Takatori, Hiroaki Yano, Hiroo Iwata:
Panoramic Movie-Rendering Method with Superimposed Computer Graphics for Immersive Walk-Through System. AsiaHaptics 2014: 277-284 - [c32]Yoshiyuki Yamashita, Hiroaki Yano, Hiroo Iwata:
Haptic Interface for Shape and Texture Recognition of Remote Objects by Using a Laser Range Finder. AsiaHaptics 2014: 305-310 - 2012
- [j8]Hiroaki Yano, Shintaro Tamefusa, Naoki Tanaka, Hideyuki Saitou, Hiroo Iwata:
Interactive Gait Rehabilitation System with a Locomotion Interface for Training Patients to Climb Stairs. Presence Teleoperators Virtual Environ. 21(1): 16-30 (2012) - [c31]Vibol Yem, Hideaki Kuzuoka, Naomi Yamashita, Ryota Shibusawa, Hiroaki Yano, Jun Yamashita:
Assisting hand skill transfer of tracheal intubation using outer-covering haptic display. CHI 2012: 3177-3180 - [c30]Hiroaki Yano, Takeyuki Aoki, Hiroo Iwata:
Handheld haptic interface with visual display for touching remote objects. HAPTICS 2012: 349-354 - 2010
- [c29]Hiroaki Yano, Shintaro Tamefusa, Naoki Tanaka, Hideyuki Saitou, Hiroo Iwata:
Gait rehabilitation system for stair climbing and descending. HAPTICS 2010: 393-400
2000 – 2009
- 2009
- [c28]Hiroaki Yano, Yuichi Miyamoto, Hiroo Iwata:
Haptic interface for perceiving remote object using a laser range finder. WHC 2009: 196-201 - [c27]Hiroaki Yano, Yuichi Miyamoto, Hiroo Iwata:
Touch the untouchable. SIGGRAPH ASIA Art Gallery & Emerging Technologies 2009: 87 - 2008
- [j7]Hiroaki Yano, Takayuki Masuda, Yosuke Nakajima, Naoki Tanaka, Shintaro Tamefusa, Hideyuki Saitou, Hiroo Iwata:
Development of a Gait Rehabilitation System With a Spherical Immersive Projection Display. J. Robotics Mechatronics 20(6): 836-845 (2008) - [c26]Hiroaki Yano, Itsuro Hayashi, Hiroo Iwata:
1DOF Sensor and Display system of Haptic and Temperature Sensation. HAPTICS 2008: 369-370 - 2007
- [c25]Mutsuki Matsumoto, Hiroaki Yano, Hiroo Iwata:
Development of a Motion Teaching System Using an Immersive Projection Display and a Haptic Interface. WHC 2007: 298-303 - [c24]Hiroo Iwata, Hiroaki Yano, Masaki Tomiyoshi:
String walker. SIGGRAPH Emerging Technologies 2007: 20 - 2006
- [j6]Hiroaki Yano, Masaki Nudejima, Masaki Tomiyoshi, Hiroo Iwata:
Rigidity Distribution Rendering for a Tool-Handling Type Haptic Interface. J. Robotics Mechatronics 18(4): 418-425 (2006) - [c23]Hiroaki Yano, Keita Komine, Hiroo Iwata:
Development of a High-resolution Surface Type Haptic interface for Rigidity Distribution Rendering. HAPTICS 2006: 54 - [c22]Hiroo Iwata, Hiroaki Yano, Hiroshi Tomioka:
Powered shoes. SIGGRAPH Emerging Technologies 2006: 28 - [c21]Machiko Kusahara, Kazuhiko Hachiya, Masahiko Inami, Sachiko Kodama, Ryota Kuwakubo, Taro Maeda, Nobumichi Tosa, Hiroaki Yano, Hiroo Iwata:
Device art, a new approach in media art: (poster_0186). SIGGRAPH Research Posters 2006: 143 - 2005
- [j5]Hiroo Iwata, Hiroaki Yano, Hiroyuki Fukushima, Haruo Noma:
CirculaFloor. IEEE Computer Graphics and Applications 25(1): 64-67 (2005) - [c20]Hiroaki Yano, Masaki Nudejima, Hiroo Iwata:
Development of Haptic Rendering Methods of Rigidity Distribution for Tool-Handling Type Haptic Interface. WHC 2005: 569-570 - [c19]Hiroo Iwata, Hiroaki Yano, Naoto Ono:
Volflex. SIGGRAPH Emerging Technologies 2005: 31 - [c18]Hiroo Iwata, Hiroaki Yano, Hiroyuki Fukushima, Haruo Noma:
CirculaFloor: A Locomotion Interface Using Circulation of Movable Tiles. VR 2005: 223-230 - 2004
- [j4]Hiroaki Yano, Kaori Kasai, Hideyuki Saitou, Hiroo Iwata:
Sharing Sense of Walking With Locomotion Interfaces. Int. J. Hum. Comput. Interact. 17(4): 447-462 (2004) - [c17]Hiroaki Yano, Hiromi Igawa, Toshihiro Kameda, Koichi Muzutani:
AudioHaptics: Audio and Haptic Rendering Based on a Physical Model. HAPTICS 2004: 250-257 - [c16]Hiroo Iwata, Hiroaki Yano, Takahiro Uemura, Tetsuro Moriya:
Food Texture Display. HAPTICS 2004: 310-315 - [c15]Hiroo Iwata, Hiroaki Yano, Hiroyuki Fukushima, Haruo Noma:
CirculaFloor. SIGGRAPH Emerging Technologies 2004: 3 - [c14]Hiroo Iwata, Hiroaki Yano, Takahiro Uemura, Tetsuro Moriya:
Food Simulator: A Haptic Interface for Biting. VR 2004: 51-58 - 2003
- [j3]Hiroaki Yano, Kaori Kasai, Hideyuki Saitou, Hiroo Iwata:
Development of a gait rehabilitation system using a locomotion interface. Comput. Animat. Virtual Worlds 14(5): 243-252 (2003) - [c13]Hiroaki Yano, Masayuki Yoshie, Hiroo Iwata:
Development of a Non-Grounded Haptic Interface Using the Gyro Effect. HAPTICS 2003: 32-39 - [c12]Hiroo Iwata, Hiroaki Yano, Takahiro Uemura, Tetsuro Moriya:
Food Simulator. ICAT 2003 - 2002
- [c11]Hiroo Iwata, Hiroaki Yano, Ryo Kawamura:
Array Force Display for Hardness Distribution. Symposium on Haptic Interfaces for Virtual Environment and Teleoperator Systems 2002: 165-171 - [c10]Hiroo Iwata, Hiroaki Yano, Hiromi Igawa:
Audio haptics. SIGGRAPH Abstracts and Applications 2002: 66 - [c9]Hiroo Iwata, Hiroaki Yano, Motohiro Tsuzuki, Fumitaka Nakaizumi, Takayuki Yoshioka, Yutaka Miyakita:
NONA-vision. SIGGRAPH Abstracts and Applications 2002: 73 - 2001
- [c8]Hiroaki Yano, Hiroo Iwata:
Software Architecture for Audio and Haptic Rendering Based on a Physical Model. INTERACT 2001: 19-26 - [c7]Hiroaki Yano, Wataru Hashimoto, Hiroo Iwata:
Virtual Reality Lab. - University of Tsukuba. INTERACT 2001: 883-884 - [c6]Hiroo Iwata, Hiroaki Yano, Fumitaka Nakaizumi, Ryo Kawamura:
Project FEELEX: adding haptic surface to graphics. SIGGRAPH 2001: 469-476 - [c5]Michitaka Hirose, Koichi Hirota, Tetsuro Ogi, Hiroaki Yano, Naoyuki Kakehi, Makoto Saito, Mutsuhiro Nakashige:
HapticGEAR: The Development of a Wearable Force Display System for Immersive Projection Displays. VR 2001: 123-130 - [c4]Hiroo Iwata, Hiroaki Yano, Fumitaka Nakaizumi:
Gait Master: A Versatile Locomotion Interface for Uneven Virtual Terrain. VR 2001: 131- - 2000
- [c3]Hiroaki Yano, Haruo Noma, Hiroo Iwata, Tsutomu Miyasato:
Shared walk environment using locomotion interfaces. CSCW 2000: 163-170
1990 – 1999
- 1999
- [c2]Hiroaki Yano, Naoyuki Kakehi, Tetsuro Ogi, Michitaka Hirose:
Haptic interface for immersive projection display. HCI (2) 1999: 1030-1034 - [c1]Michitaka Hirose, Tetsuro Ogi, Hiroaki Yano, Naoyuki Kakehi:
Development of Wearable Force Display (HapticGEAR) for Immersive Projection Displays. VR 1999: 79 - 1997
- [j2]Hiroo Iwata, Hiroaki Yano, Wataru Hashimoto:
LHX: an integrated software tool for haptic interface. Comput. Graph. 21(4): 413-420 (1997)
1980 – 1989
- 1984
- [j1]Hiroharu Wakabayashi, Kohichi Tatekura, Hiroaki Yano, Yasuhiko Niiro:
Design and Experimental Results of the OS-280M Optical Submarine Repeater Circuits. IEEE J. Sel. Areas Commun. 2(6): 950-956 (1984)
Coauthor Index
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2024-10-07 22:16 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint