default search action
Hiroyuki Shinoda 0001
Person information
- affiliation: University of Tokyo, Department of Complexity Science and Engineering, Japan
- affiliation (former): University of California Berkeley, CA, USA
- affiliation (1995 - 1996): Tokyo University of Agriculture and Technology, Koganei, Japan
- affiliation (PhD 1995): University of Tokyo, Faculty of Engineering, Japan
Other persons with the same name
- Hiroyuki Shinoda 0002 — Ritsumeikan University, College of Information Science and Engineering, Shiga, Japan
- Hiroyuki Shinoda 0003 — Tokyo Denki University, Japan
SPARQL queries
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j31]Gakuto Arakawa, Ryunosuke Hirai, Shun Suzuki, Takaaki Kamigaki, Yasutoshi Makino, Hiroyuki Shinoda:
Two-Dimensional Remote Actuation of Centimeter-Scale Objects With a Concave Bottom Using Airborne Ultrasound. IEEE Access 12: 84612-84621 (2024) - [j30]Qingyu Sun, Mingxin Zhang, Yasutoshi Makino, Hiroyuki Shinoda:
Expanding Softness and Hardness Sensations in Mid-Air Ultrasonic Haptic Interfaces Combining Amplitude and Spatiotemporal Modulation. IEEE Access 12: 154743-154750 (2024) - [j29]Tao Morisaki, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Noncontact Haptic Rendering of Static Contact With Convex Surface Using Circular Movement of Ultrasound Focus on a Finger Pad. IEEE Trans. Haptics 17(3): 334-345 (2024) - [j28]Tao Morisaki, Takaaki Kamigaki, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
UltLever: Ultrasound-Driven Passive Haptic Actuator Based on Amplifying Radiation Force Using a Simple Lever Mechanism. IEEE Trans. Haptics 17(3): 471-482 (2024) - [j27]Saya Mizutani, Shun Suzuki, Atsushi Matsubayashi, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Local Area Tactile Stimulation Using Interference of Multi-Frequency Airborne Ultrasound. IEEE Trans. Haptics 17(4): 761-770 (2024) - [c180]Naoki Kishi, Atsushi Matsubayashi, Yasutoshi Makino, Hiroyuki Shinoda:
Surface Tactile Presentation to the Palm Using an Aerial Ultrasound Tactile Display. EuroHaptics (1) 2024: 69-81 - [c179]Qingyu Sun, Mingxin Zhang, Yasutoshi Makino, Hiroyuki Shinoda:
Exploring the Range of Softness Perception Presented by Spatiotemporal Modulation in Mid-Air Ultrasound Haptic Displays. EuroHaptics (2) 2024: 90-102 - [c178]Atsushi Matsubayashi, Yasutoshi Makino, Hiroyuki Shinoda:
Latency Compensation in Ultrasound Tactile Presentation by Linear Prediction of Hand Posture. EuroHaptics (1) 2024: 365-377 - [i17]Mingxin Zhang, Shun Terui, Yasutoshi Makino, Hiroyuki Shinoda:
TEXasGAN: Tactile Texture Exploration and Synthesis System Using Generative Adversarial Network. CoRR abs/2407.11467 (2024) - [i16]Mingxin Zhang, Qirong Zhu, Yasutoshi Makino, Hiroyuki Shinoda:
Feeling the Grass Grow: Making Midair Haptic Parameters Visible, Touchable and Controllable. CoRR abs/2407.15063 (2024) - [i15]Sota Iwabuchi, Ryoya Onishi, Shun Suzuki, Takaaki Kamigaki, Yasutoshi Makino, Hiroyuki Shinoda:
Simultaneous Presentation of Thermal and Mechanical Stimulation Using High-Intensity Airborne Ultrasound. CoRR abs/2411.05108 (2024) - [i14]Chonghoon Park, Qirong Zhu, Shinji Tanaka, Yasutoshi Makino, Hiroyuki Shinoda:
Haptic Information Feedback Given to Handles in Guide Dog Training. CoRR abs/2411.05109 (2024) - [i13]Aoba Sekiguchi, Tao Morisaki, Takaaki Kamigaki, Yasutoshi Makino, Hiroyuki Shinoda:
Haptic Reproduction of Curved Surface and Edge by Controlling the Contact Position between the Disk and the Finger Using Airborne Ultrasound. CoRR abs/2411.05110 (2024) - [i12]Koichi Kato, Tao Morisaki, Shun Suzuki, Yasutoshi Makino, Hiroyuki Shinoda:
Edge shape sensation presented in a noncontact manner using airborne ultrasound. CoRR abs/2411.05128 (2024) - [i11]Manato Yo, Atsushi Matsubayashi, Yasutoshi Makino, Hiroyuki Shinoda:
Passive Touch Experience with Virtual Doctor Fish Using Ultrasound Haptics. CoRR abs/2411.05152 (2024) - [i10]Haruka Tsuchiya, Zen Somei, Yasutoshi Makino, Hiroyuki Shinoda:
Tap tactile presentation by airborne ultrasound. CoRR abs/2411.06653 (2024) - 2023
- [j26]Yutaro Toide, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Sufficient Time-Frequency Resolution for Reproducing Vibrotactile Sensation. IEEE Trans. Haptics 16(3): 412-423 (2023) - [j25]Atsushi Matsubayashi, Kanta Shiku, Yasutoshi Makino, Hiroyuki Shinoda:
Focusing Reflected Ultrasound Using Boundary Element Model for Mid-Air Tactile Presentation. IEEE Trans. Haptics 16(4): 695-701 (2023) - [j24]Jianyu Chen, Shun Suzuki, Tao Morisaki, Yutaro Toide, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Sound Pressure Field Reconstruction for Airborne Ultrasound Tactile Display Encountering Obstacles. IEEE Trans. Haptics 16(4): 868-873 (2023) - [c177]Sota Iwabuchi, Ryoya Onishi, Shun Suzuki, Takaaki Kamigaki, Yasutoshi Makino, Hiroyuki Shinoda:
Performance Evaluation of Airborne Ultrasound Focus Measurement Using Thermal Imaging on the Surface of a Finger. WHC 2023: 210-215 - [c176]Qirong Zhu, Ansheng Wang, Shinji Tanaka, Yoshiro Matsunami, Yasutoshi Makino, Hiroyuki Shinoda:
Design of Haptic Experience Recording for Guide-dog Training. SMC 2023: 4914-4919 - [c175]Yuri Mikawa, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
High-speed and Low-Latency Ocular Parallax Rendering Improves Binocular Fusion in Stereoscopic Vision. VR Workshops 2023: 735-736 - [i9]Tao Morisaki, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Noncontact Haptic Rendering of Static Contact with Convex Surface Using Circular Movement of Ultrasound Focus on a Finger Pad. CoRR abs/2301.11572 (2023) - [i8]Koya Hiura, Shun Suzuki, Tao Morisaki, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Three-dimensional hand guidance by midair haptic display. CoRR abs/2304.11413 (2023) - [i7]Sora Satake, Yoshihiro Nagano, Masashi Sugiyama, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Analysis of Pleasantness Evoked by Various Airborne Ultrasound Tactile Stimuli Using Pairwise Comparisons and the Bradley-Terry Model. CoRR abs/2305.09412 (2023) - 2022
- [j23]Yuki Abe, Yu Someya, Mitsuhiko Shimomura, Task Ohmori, Seki Inoue, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Remote Friction Reduction on Polystyrene Foam Surface by Focused Airborne Ultrasound. IEEE Trans. Haptics 15(2): 363-371 (2022) - [j22]Tao Morisaki, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Non-Vibratory Pressure Sensation Produced by Ultrasound Focus Moving Laterally and Repetitively With Fine Spatial Step Width. IEEE Trans. Haptics 15(2): 441-450 (2022) - [c174]Hiroyuki Shinoda:
Creation of Realistic Haptic Experiences for Materialized Graphics. AsiaHaptics 2022: 41-52 - [c173]Ryoya Onishi, Tao Morisaki, Shun Suzuki, Saya Mizutani, Takaaki Kamigaki, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
GazeBreath: Input Method Using Gaze Pointing and Breath Selection. AHs 2022: 1-9 - [c172]Jianyu Chen, Shun Suzuki, Tao Morisaki, Yutaro Toide, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Sound Pressure Field Reconstruction for Ultrasound Phased Array by Linear Synthesis Scheme Optimization. EuroHaptics 2022: 147-154 - [c171]Mitsuhiko Shimomura, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Estimation of Frictional Force Using the Thermal Images of Target Surface During Stroking. EuroHaptics 2022: 234-242 - [c170]Zen Somei, Tao Morisaki, Yutaro Toide, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Spatial Resolution of Mesoscopic Shapes Presented by Airborne Ultrasound. EuroHaptics 2022: 243-251 - [c169]Takumi Abe, Atsushi Matsubayashi, Yasutoshi Makino, Hiroyuki Shinoda:
Transducer preselection in ultrasonic phased array to form multiple foci on a non-planar surface. HAPTICS 2022: 1-6 - [c168]Atsushi Matsubayashi, Yasutoshi Makino, Hiroyuki Shinoda:
Accurate Control of Sound Field Amplitude for Ultrasound Haptic Rendering Using the Levenberg-Marquardt Method. HAPTICS 2022: 1-6 - [c167]Takuro Furumoto, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Bang-bang Control with Constant Thrust of a Spherical Blimp Propelled by Ultrasound Beam. ICRA 2022: 4051-4057 - [c166]Chaoshun Xu, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Intention Estimation in Kicking from a Seated Position. SICE 2022: 766-771 - [c165]Toshiki Itai, Takafumi Kurai, Yutaro Toide, Yasutoshi Makino, Hiroyuki Shinoda:
Evaluation of Maximum Error in Jump Motion Prediction. SICE 2022: 772-777 - [c164]Yasutoshi Makino, Tatsuya Takei, Yoshimi Niida, Satoru Tawada, Yoshiro Matsunami, Hiroyuki Shinoda:
Analysis of Concentration of Guide Dogs from Training Behaviors. SICE 2022: 1363-1368 - [c163]Hanaho Motoyama, Masahiro Fujiwara, Tao Morisaki, Hiroyuki Shinoda, Yasutoshi Makino:
Touchable Cooled Graphics: Midair 3D Image with Noncontact Cooling Feedback using Ultrasound-Driven Mist Vaporization. SIGGRAPH ASIA Emerging Technologies 2022: 10:1-10:2 - [c162]Tao Morisaki, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Ultrasound-Driven Passive Haptic Actuator Based on Amplifying Radiation Force Using Simple Lever Mechanism. SIGGRAPH ASIA Emerging Technologies 2022: 11:1-11:2 - 2021
- [j21]Akihito Noda, Hiroyuki Shinoda:
Simplex Inter-IC for Wearables and Its Applications. IEEE Access 9: 69654-69662 (2021) - [j20]Chaoshun Xu, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Investigation of Preliminary Motions from a Static State and Their Predictability. J. Robotics Mechatronics 33(3): 537-546 (2021) - [j19]Tao Morisaki, Ryoma Mori, Ryosuke Mori, Kohki Serizawa, Yasutoshi Makino, Yuta Itoh, Yuji Yamakawa, Hiroyuki Shinoda:
Ultrasound-driven Curveball in Table Tennis: Human Activity Support via Noncontact Remote Object Manipulation. Proc. ACM Hum. Comput. Interact. 5(ISS): 503:1-503:20 (2021) - [j18]Yuki Abe, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Remote Friction Reduction on Resonant Film Surface by Airborne Ultrasound. IEEE Trans. Haptics 14(2): 260-265 (2021) - [j17]Shun Suzuki, Seki Inoue, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
AUTD3: Scalable Airborne Ultrasound Tactile Display. IEEE Trans. Haptics 14(4): 740-749 (2021) - [j16]Mitsuru Nakajima, Keisuke Hasegawa, Yasutoshi Makino, Hiroyuki Shinoda:
Spatiotemporal Pinpoint Cooling Sensation Produced by Ultrasound-Driven Mist Vaporization on Skin. IEEE Trans. Haptics 14(4): 874-884 (2021) - [j15]Shun Suzuki, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Radiation Pressure Field Reconstruction for Ultrasound Midair Haptics by Greedy Algorithm With Brute-Force Search. IEEE Trans. Haptics 14(4): 914-921 (2021) - [c161]Ryoya Onishi, Tao Morisaki, Shun Suzuki, Saya Mizutani, Takaaki Kamigaki, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
DualBreath: Input Method Using Nasal and Mouth Breathing. AHs 2021: 283-285 - [c160]Task Ohmori, Yuki Abe, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Remote Friction Control on 3-dimensional Object Made of Polystyrene Foam Using Airborne Ultrasound Focus. CHI Extended Abstracts 2021: 226:1-226:5 - [c159]Kentaro Ariga, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Workspace Evaluation of Long-Distance Midair Haptic Display Using Curved Reflector. WHC 2021: 85-90 - [c158]Masahiro Fujiwara, Yu Someya, Yasutoshi Makino, Hiroyuki Shinoda:
Reflection Pattern Sensing for Valid Airborne Ultrasound Tactile Display. WHC 2021: 121-126 - [c157]Atsushi Matsubayashi, Tomohisa Yamaguchi, Yasutoshi Makino, Hiroyuki Shinoda:
Rendering Softness Using Airborne Ultrasound. WHC 2021: 355-360 - [c156]Kai Tsumoto, Tao Morisaki, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Presentation of Tactile Pleasantness Using Airborne Ultrasound. WHC 2021: 602-606 - [c155]Arata Jingu, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Tactile Perception Characteristics of Lips Stimulated by Airborne Ultrasound. WHC 2021: 607-612 - [c154]Ansheng Wang, Yasutoshi Makino, Hiroyuki Shinoda:
Machine Learning-based Human-Following System: Following the Predicted Position of a Walking Human. ICRA 2021: 4502-4508 - [c153]Yuri Mikawa, Masahiro Fujiwara, Takefumi Hiraki, Yasutoshi Makino, Hiroyuki Shinoda:
Far-field Aerial Image Presentation of One Point by a Laser Source using Beam Scanning by Two-axis Galvanometer Mirror. SICE 2021: 137-143 - [c152]Saya Mizutani, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Improving In-vivo Imaging Accuracy by Using Capsule Sound Source. SICE 2021: 1138-1143 - [c151]Tao Morisaki, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Midair Haptic-Optic Display with Multi-Tactile Texture based on Presenting Vibration and Pressure Sensation by Ultrasound. SIGGRAPH ASIA Emerging Technologies 2021: 10:1-10:2 - [c150]Ansheng Wang, Yasutoshi Makino, Masahiro Fujiwara, Hiroyuki Shinoda:
Predict Human Motion of Walk with Probability Distributions by Combining Machine Learning and Particle Filter. SMC 2021: 600-606 - [c149]Arata Jingu, Takaaki Kamigaki, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
LipNotif: Use of Lips as a Non-Contact Tactile Notification Interface Based on Ultrasonic Tactile Presentation. UIST 2021: 13-23 - [c148]Takuro Furumoto, Takumi Kasai, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Midair Balloon Interface: A Soft and Lightweight Midair Object for Proximate Interactions. UIST 2021: 783-795 - 2020
- [j14]Shun Suzuki, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Reducing Amplitude Fluctuation by Gradual Phase Shift in Midair Ultrasound Haptics. IEEE Trans. Haptics 13(1): 87-93 (2020) - [j13]Ryoko Takahashi, Keisuke Hasegawa, Hiroyuki Shinoda:
Tactile Stimulation by Repetitive Lateral Movement of Midair Ultrasound Focus. IEEE Trans. Haptics 13(2): 334-342 (2020) - [c147]Tao Morisaki, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Comparing Lateral Modulation and Amplitude Modulation in Phantom Sensation. EuroHaptics 2020: 122-130 - [c146]Takaaki Kamigaki, Shun Suzuki, Hiroyuki Shinoda:
Noncontact Thermal and Vibrotactile Display Using Focused Airborne Ultrasound. EuroHaptics 2020: 271-278 - [c145]Kentaro Ariga, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Midair Haptic Presentation Using Concave Reflector. EuroHaptics 2020: 307-315 - [c144]Atsushi Matsubayashi, Yasutoshi Makino, Hiroyuki Shinoda:
Rendering Ultrasound Pressure Distribution on Hand Surface in Real-Time. EuroHaptics 2020: 407-415 - [c143]Emiri Sakiyama, Atsushi Matsubayashi, Daichi Matsumoto, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Midair Tactile Reproduction of Real Objects. EuroHaptics 2020: 425-433 - [c142]Seunggoo Rim, Shun Suzuki, Yutaro Toide, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Sound-Image Icon with Aerial Haptic Feedback. EuroHaptics 2020: 489-496 - [c141]Kohki Serizawa, Tao Morisaki, Charlotte Delfosse, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Super Haptoclone: Upper-Body Mutual Telexistence System with Haptic Feedback. SIGGRAPH Emerging Technologies 2020: 1:1-1:2 - [c140]Tao Morisaki, Ryoma Mori, Ryosuke Mori, Kohki Serizawa, Yasutoshi Makino, Yuta Itoh, Yuji Yamakawa, Hiroyuki Shinoda:
Hopping-Pong: Computational Curveball in Table Tennis by Noncontact Ultrasound Force. SIGGRAPH Emerging Technologies 2020: 11:1-11:2 - [c139]Takuro Furumoto, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Balloon Interface for Midair Haptic Interaction. SIGGRAPH ASIA Emerging Technologies 2020: 6:1-6:2 - [c138]Takaaki Kamigaki, Shun Suzuki, Hiroyuki Shinoda:
Mid-air Thermal Display via High-intensity Ultrasound. SIGGRAPH ASIA Emerging Technologies 2020: 17:1-17:2 - [c137]Mitsuru Nakajima, Yasutoshi Makino, Hiroyuki Shinoda:
Remote Cooling Sensation Presentation Controlling Mist in Midair. SII 2020: 1238-1241 - [c136]Ryoma Mori, Toki Furukawa, Yasutoshi Makino, Hiroyuki Shinoda:
Measurement of Disturbance-Induced Fall Behavior and Prediction Using Neural Network. SMC 2020: 2142-2149 - [i6]Takaaki Kamigaki, Shun Suzuki, Hiroyuki Shinoda:
Noncontact Thermal and Vibrotactile Display Using Focused Airborne Ultrasound. CoRR abs/2002.02635 (2020)
2010 – 2019
- 2019
- [j12]Takuro Furumoto, Keisuke Hasegawa, Yasutoshi Makino, Hiroyuki Shinoda:
Three-Dimensional Manipulation of a Spherical Object Using Ultrasound Plane Waves. IEEE Robotics Autom. Lett. 4(1): 81-88 (2019) - [j11]Akihito Noda, Hiroyuki Shinoda:
Inter-IC for Wearables (I2We): Power and Data Transfer Over Double-Sided Conductive Textile. IEEE Trans. Biomed. Circuits Syst. 13(1): 80-90 (2019) - [j10]Azuma Yoshimoto, Keisuke Hasegawa, Yasutoshi Makino, Hiroyuki Shinoda:
Midair Haptic Pursuit. IEEE Trans. Haptics 12(4): 652-657 (2019) - [c135]Shuya Suda, Yasutoshi Makino, Hiroyuki Shinoda:
Prediction of Volleyball Trajectory Using Skeletal Motions of Setter Player. AH 2019: 16:1-16:8 - [c134]Atsushi Matsubayashi, Yasutoshi Makino, Hiroyuki Shinoda:
Direct Finger Manipulation of 3D Object Image with Ultrasound Haptic Feedback. CHI 2019: 87 - [c133]Takuya Handa, Makiko Azuma, Toshihiro Shimizu, Satoru Kondo, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Ball-type Haptic Interface to Present Impact Points with Vibrations for Televised Ball-based Sporting Event. WHC 2019: 85-90 - [c132]Shun Suzuki, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Midair Hand Guidance by an Ultrasound Virtual Handrail. WHC 2019: 271-276 - [c131]Mitsuru Ito, Yuji Kokumai, Hiroyuki Shinoda:
Midair Click of Dual-Layer Haptic Button. WHC 2019: 349-352 - [c130]Atsushi Matsubayashi, Hiroki Oikawa, Saya Mizutani, Yasutoshi Makino, Hiroyuki Shinoda:
Display of Haptic Shape Using Ultrasound Pressure Distribution Forming Cross-Sectional Shape. WHC 2019: 419-424 - [c129]Saya Mizutani, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Thresholds of Haptic and Auditory Perception in Midair Facial Stimulation. HAVE 2019: 1-6 - [c128]Mitsuru Nakajima, Yasutoshi Makino, Hiroyuki Shinoda:
Displaying Pain Sensation in Midair by Thermal Grill Illusion. HAVE 2019: 1-5 - [c127]Emiri Sakiyama, Daichi Matsumoto, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Evaluation of Multi-Point Dynamic Pressure Reproduction Using Microphone-Based Tactile Sensor Array. HAVE 2019: 1-6 - [c126]Task Ohmori, Yuki Abe, Yu Someya, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
ReFriction: Remote friction control on polystyrene foam by ultrasound phased array. SIGGRAPH ASIA Emerging Technologies 2019: 40-41 - [c125]Takuro Furumoto, Mitsuru Ito, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda, Takaaki Kamigaki:
Three-dimensional Interaction Technique Using an Acoustically Manipulated Balloon. SIGGRAPH ASIA Emerging Technologies 2019: 51-52 - [c124]Takafumi Kurai, Yutaro Shioi, Yasutoshi Makino, Hiroyuki Shinoda:
Temporal Conditions Suitable for Predicting Human Motion in Walking. SMC 2019: 2986-2991 - [c123]Yasutoshi Makino, Yutaro Shioi, Yuuki Horiuchi, Hiroyuki Shinoda:
Interference of Projected Future Self. SMC 2019: 4113-4117 - [c122]Tao Morisaki, Ryoma Mori, Ryosuke Mori, Yasutoshi Makino, Yuta Itoh, Yuji Yamakawa, Hiroyuki Shinoda:
Hopping-Pong: Changing Trajectory of Moving Object Using Computational Ultrasound Force. ISS 2019: 123-133 - [c121]Takuro Furumoto, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
BaLuna: Floating Balloon Screen Manipulated Using Ultrasound. VR 2019: 937-938 - 2018
- [j9]Keisuke Hasegawa, Hiroyuki Shinoda:
Aerial Vibrotactile Display Based on Multiunit Ultrasound Phased Array. IEEE Trans. Haptics 11(3): 367-377 (2018) - [j8]Keisuke Hasegawa, Liwei Qiu, Hiroyuki Shinoda:
Midair Ultrasound Fragrance Rendering. IEEE Trans. Vis. Comput. Graph. 24(4): 1477-1485 (2018) - [c120]Shun Suzuki, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Midair Ultrasound Haptic Display with Large Workspace. AsiaHaptics 2018: 3-5 - [c119]Kentaro Yoshida, Yuuki Horiuchi, Tomohiro Ichiyama, Seki Inoue, Yasutoshi Makino, Hiroyuki Shinoda:
Estimation of Racket Grip Vibration from Tennis Video by Neural Network. AsiaHaptics 2018: 33-45 - [c118]Mitsuru Nakajima, Keisuke Hasegawa, Yasutoshi Makino, Hiroyuki Shinoda:
Remotely Displaying Cooling Sensation Using Ultrasound Mist Beam. AsiaHaptics 2018: 85-87 - [c117]Ryoko Takahashi, Saya Mizutani, Keisuke Hasegawa, Masahiro Fujiwara, Hiroyuki Shinoda:
Circular Lateral Modulation in Airborne Ultrasound Tactile Display. AsiaHaptics 2018: 92-94 - [c116]Takuro Furumoto, Yutaro Toide, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Encounter-Type Haptic Feedback System Using an Acoustically Manipulated Floating Object. AsiaHaptics 2018: 183-186 - [c115]Tao Morisaki, Masahiro Fujiwara, Yasutoshi Makino, Hiroyuki Shinoda:
Controlling Robot Vehicle Using Hand-Gesture with Mid-Air Haptic Feedback. AsiaHaptics 2018: 268-271 - [c114]Kohki Serizawa, Yuichi Masuda, Shun Suzuki, Masahiro Fujiwara, Akihito Noda, Yasutoshi Makino, Hiroyuki Shinoda:
Whole Body Haptic Experience Using 2D Communication Wear. AsiaHaptics 2018: 331-333 - [c113]Yuichi Masuda, Akihito Noda, Hiroyuki Shinoda:
Whole body human power-based energy harvesting using a conductive embroidered cloth and a power aggregation circuit. BSN 2018: 214-217 - [c112]Yuichi Masuda, Akihito Noda, Hiroyuki Shinoda:
Body Sensor Networks Powered by an NFC-Coupled Smartphone in the Pocket. EMBC 2018: 5394-5397 - [c111]Tomoki Oji, Yasutoshi Makino, Hiroyuki Shinoda:
Weight Estimation of Lifted Object from Body Motions Using Neural Network. EuroHaptics (2) 2018: 3-13 - [c110]Yoshinori Inoue, Yasutoshi Makino, Hiroyuki Shinoda:
Estimation of the Pressing Force from Finger Image by Using Neural Network. EuroHaptics (2) 2018: 46-57 - [c109]Shun Suzuki, Keisuke Hasegawa, Yasutoshi Makino, Hiroyuki Shinoda:
Haptic Tracing of Midair Linear Trajectories Presented by Ultrasound Bessel Beams. EuroHaptics (1) 2018: 209-220 - [c108]Ryoko Takahashi, Keisuke Hasegawa, Hiroyuki Shinoda:
Lateral Modulation of Midair Ultrasound Focus for Intensified Vibrotactile Stimuli. EuroHaptics (2) 2018: 276-288 - [c107]Mitsuru Nakajima, Keisuke Hasegawa, Yasutoshi Makino, Hiroyuki Shinoda:
Remotely displaying cooling sensation via ultrasound-driven air flow. HAPTICS 2018: 340-343 - [c106]Tomohiro Ichiyama, Atsushi Matsubayashi, Yasutoshi Makino, Hiroyuki Shinoda:
Real-Time Control Operation Support of Unstable System by Visual Feedback. VR 2018: 581-582 - [e2]Domenico Prattichizzo, Hiroyuki Shinoda, Hong Z. Tan, Emanuele Ruffaldi, Antonio Frisoli:
Haptics: Science, Technology, and Applications - 11th International Conference, EuroHaptics 2018, Pisa, Italy, June 13-16, 2018, Proceedings, Part I. Lecture Notes in Computer Science 10893, Springer 2018, ISBN 978-3-319-93444-0 [contents] - [e1]Domenico Prattichizzo, Hiroyuki Shinoda, Hong Z. Tan, Emanuele Ruffaldi, Antonio Frisoli:
Haptics: Science, Technology, and Applications - 11th International Conference, EuroHaptics 2018, Pisa, Italy, June 13-16, 2018, Proceedings, Part II. Lecture Notes in Computer Science 10894, Springer 2018, ISBN 978-3-319-93398-6 [contents] - [i5]Akihito Noda, Hiroyuki Shinoda:
Inter-IC for Wearables (I2We): Power and Data Transfer over Double-sided Conductive Textile. CoRR abs/1808.06548 (2018) - 2017
- [c105]Kentaro Yoshida, Seki Inoue, Yasutoshi Makino, Hiroyuki Shinoda:
VibVid: VIBration Estimation from VIDeo by using Neural Network. ICAT-EGVE 2017: 37-44 - [c104]Yuuki Horiuchi, Kentaro Yoshida, Yasutoshi Makino, Hiroyuki Shinoda:
Rubber hand illusion using invisible tactile stimulus. WHC 2017: 490-494 - [c103]Daichi Matsumoto, Keisuke Hasegawa, Yasutoshi Makino, Hiroyuki Shinoda:
Displaying variable stiffness by passive nonlinear spring using visuo-haptic interaction. WHC 2017: 587-592 - [c102]Kentaro Yoshida, Yuuki Horiuchi, Seki Inoue, Yasutoshi Makino, Hiroyuki Shinoda:
HaptoCloneAR: mutual haptic-optic interactive system with 2D image superimpose. SIGGRAPH Emerging Technologies 2017: 13:1-13:2 - [c101]Yuuki Horiuchi, Yasutoshi Makino, Hiroyuki Shinoda:
Computational foresight: realtime forecast of human body motion. SIGGRAPH ASIA Emerging Technologies 2017: 2:1-2:2 - [c100]Keisuke Hasegawa, Liwei Qiu, Hiroyuki Shinoda:
Interactive midair odor control via ultrasound-driven air flow. SIGGRAPH ASIA Emerging Technologies 2017: 8:1-8:2 - [c99]Yuichi Masuda, Akihito Noda, Hiroyuki Shinoda:
Power aggregation from multiple energy harvesting devices via a conductive embroidered cloth. SII 2017: 553-558 - [c98]Yuuki Horiuchi, Yasutoshi Makino, Hiroyuki Shinoda:
Computational Foresight: Forecasting Human Body Motion in Real-time for Reducing Delays in Interactive System. ISS 2017: 312-317 - [c97]Takuya Handa, Kenji Murase, Makiko Azuma, Toshihiro Shimizu, Satoru Kondo, Hiroyuki Shinoda:
A haptic three-dimensional shape display with three fingers grasping. VR 2017: 325-326 - [c96]Yuichi Masuda, Hiroyuki Shinoda, Akihito Noda:
Physical Layer Design of Energy-Efficient Data Transmission in 2D Communication Environments. VTC Fall 2017: 1-5 - 2016
- [j7]Keisuke Hasegawa, Tatsuma Sakurai, Yasutoshi Makino, Hiroyuki Shinoda:
Character Reading via Stylus Reproducing Normal Handwriting Motion. IEEE Trans. Haptics 9(1): 13-19 (2016) - [j6]Tatsuma Sakurai, Masashi Konyo, Hiroyuki Shinoda:
Sharp Tactile Line Presentation Using Edge Stimulation Method. IEEE Trans. Haptics 9(1): 90-99 (2016) - [c95]Yuuki Horiuchi, Kazunori Odani, Yasutoshi Makino, Hiroyuki Shinoda:
Rubber Hand Illusion Using Tactile Projector. AsiaHaptics 2016: 41-46 - [c94]Seki Inoue, Yasutoshi Makino, Hiroyuki Shinoda:
Scalable Architecture for Airborne Ultrasound Tactile Display. AsiaHaptics 2016: 99-103 - [c93]Mitsuru Ito, Daisuke Wakuda, Yasutoshi Makino, Hiroyuki Shinoda:
Hybrid Focus Using 70 and 40 kHz Ultrasound in Mid-Air Tactile Display. AsiaHaptics 2016: 131-134 - [c92]Yuki Tajima, Akihito Noda, Hiroyuki Shinoda:
Signal and Power Transfer to Actuators Distributed on Conductive Fabric Sheet for Wearable Tactile Display. AsiaHaptics 2016: 163-169 - [c91]Hirokazu Miyahara, Yasutoshi Makino, Hiroyuki Shinoda:
Inducing Wrist Twist During Arm Swing by Using Gyro Effect. AsiaHaptics 2016: 205-209 - [c90]Kyosuke Yamazaki, Keisuke Hasegawa, Yasutoshi Makino, Hiroyuki Shinoda:
Visuo-Tactile Interaction with Virtual Objects that Yields Kinetic Effects on Real Objects. AsiaHaptics 2016: 267-273 - [c89]Daichi Matsumoto, Ya Zhu, Yuya Tanaka, Kyosuke Yamazaki, Keisuke Hasegawa, Yasutoshi Makino, Hiroyuki Shinoda:
An Immersive Visuo-Haptic VR Environment with Pseudo-haptic Effects on Perceived Stiffness. AsiaHaptics 2016: 281-285 - [c88]Kentaro Yoshida, Koji Tanaka, Keisuke Hasegawa, Yasutoshi Makino, Hiroyuki Shinoda:
Character Recognition by Flick Movements Presented on Fingers. AsiaHaptics 2016: 425-431 - [c87]Kentaro Yoshida, Takaaki Kamigaki, Seki Inoue, Keisuke Hasegawa, Yasutoshi Makino, Hiroyuki Shinoda:
HaptoCloneAR (Haptic-Optical Clone with Augmented Reality) for Mutual Interactions with Midair 3D Floating Image and Superimposed 2D Display. AsiaHaptics 2016: 473-477 - [c86]Ryota Arai, Yasutoshi Makino, Hiroyuki Shinoda:
Magnification-Changeable Haptic-Optical Clone. AsiaHaptics 2016: 485-489 - [c85]Yuta Kimura, Yasutoshi Makino, Hiroyuki Shinoda:
Computer-Created Interactive 3D Image with Midair Haptic Feedback. AsiaHaptics 2016: 491-494 - [c84]Akihito Noda, Akimasa Okada, Yudai Fukui, Yuichi Masuda, Hiroyuki Shinoda:
Massive multiple access wireless LAN using ultra-wideband waveguide floor tiles. CCNC 2016: 272-273 - [c83]Yasutoshi Makino, Yoshikazu Furuyama, Seki Inoue, Hiroyuki Shinoda:
HaptoClone (Haptic-Optical Clone) for Mutual Tele-Environment by Real-time 3D Image Transfer with Midair Force Feedback. CHI 2016: 1980-1990 - [c82]Sriram Subramanian, Sue Ann Seah, Hiroyuki Shinoda, Eve E. Hoggan, Loic Corenthy:
Mid-Air Haptics and Displays: Systems for Un-instrumented Mid-air Interactions. CHI Extended Abstracts 2016: 3446-3452 - [c81]Mitsuru Ito, Daisuke Wakuda, Seki Inoue, Yasutoshi Makino, Hiroyuki Shinoda:
High Spatial Resolution Midair Tactile Display Using 70 kHz Ultrasound. EuroHaptics (1) 2016: 57-67 - [c80]Seki Inoue, Yasutoshi Makino, Hiroyuki Shinoda:
Mid-Air Ultrasonic Pressure Control on Skin by Adaptive Focusing. EuroHaptics (1) 2016: 68-77 - [c79]Koji Tanaka, Keisuke Hasegawa, Yasutoshi Makino, Hiroyuki Shinoda:
A Pocket-Size Alphabet Display with Letter Trajectories Presented to Fingers. EuroHaptics (1) 2016: 472-482 - [c78]Ryota Arai, Yasutoshi Makino, Hiroyuki Shinoda:
Acceptable Mismatch Between Scaled 3D Images and Tactile Stimulation. EuroHaptics (2) 2016: 501-509 - [c77]Akihito Noda, Hiroyuki Shinoda:
On-body sensor node localization using reference RFID tags embedded in wearable waveguide. IEEE SENSORS 2016: 1-3 - [c76]Yoshikazu Furuyama, Atsushi Matsubayashi, Yasutoshi Makino, Hiroyuki Shinoda:
X-SectionScope: cross-section projection in light field clone image. SIGGRAPH Emerging Technologies 2016: 22:1-22:2 - [p2]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]Max Rheiner, Thomas Tobler, Fabian Troxler, Seki Inoue, Keisuke Hasegawa, Yasuaki Monnai, Yasutoshi Makino, Hiroyuki Shinoda, Jules Françoise, Norbert Schnell, Riccardo Borghesi, Frédéric Bevilacqua, Tuncay Cakmak, Holger Hager:
Demo hour. Interactions 22(2): 6-9 (2015) - [c75]Yoshikazu Furuyama, Yasutoshi Makino, Hiroyuki Shinoda:
X-Dimensional Display: Superimposing 2D Cross-Sectional Image inside 3D Wireframe Aerial Image. ICAT-EGVE 2015: 29-36 - [c74]Seki Inoue, Yasutoshi Makino, Hiroyuki Shinoda:
Active touch perception produced by airborne ultrasonic haptic hologram. World Haptics 2015: 362-367 - [c73]Akihito Noda, Hiroyuki Shinoda:
Wireless LAN on 2-D Communication Tiles Using Ultra-Wideband as an Alternative Spectrum Resource. ICUWB 2015: 1-6 - [c72]Akimasa Okada, Akihito Noda, Hiroyuki Shinoda:
Evaluation of isolation property of UWB 2DC tile for coexistence with radio signals. IECON 2015: 2868-2873 - [c71]Hiroyuki Shinoda:
Haptoclone as a test bench of weak force haptic interaction. SIGGRAPH Asia Haptic Media And Contents Design 2015: 3:1-3:2 - [c70]Keisuke Hasegawa, Yasuaki Monnai, Seki Inoue, Yoshikazu Furuyama, Yasutoshi Makino, Hiroyuki Shinoda:
Midair touch display. SIGGRAPH Emerging Technologies 2015: 18:1 - [c69]Yoshikazu Furuyama, Yasutoshi Makino, Hiroyuki Shinoda:
X-dimensional display: superimposing 2D cross sectional image inside 3D wireframe aerial image. SIGGRAPH Asia Emerging Technologies 2015: 28:1-28:2 - [c68]Akihito Noda, Hiroyuki Shinoda:
Active tile for room-size UWB 2-D communication. SII 2015: 668-671 - [c67]Yudai Fukui, Akihito Noda, Hiroyuki Shinoda:
UWB wireless LAN by 2D-communication tile system based on direction-dependent frequency shift. SII 2015: 801-806 - [c66]Akimasa Okada, Akihito Noda, Hiroyuki Shinoda:
Time domain characteristics of multiple UWB 2D communication tiles. SII 2015: 817-822 - [c65]Yasutoshi Makino, Yoshikazu Furuyama, Hiroyuki Shinoda:
HaptoClone (Haptic-Optical Clone): Mid-air Haptic-Optical Human-Human Interaction with Perfect Synchronization. SUI 2015: 139 - [p1]Katsuhiko Hamada, Hiromu Mori, Hiroyuki Shinoda, Tomasz M. Rutkowski:
Airborne Ultrasonic Tactile Display BCI. Brain-Computer Interface Research (4) 2015: 57-65 - [i4]Katsuhiko Hamada, Hiromu Mori, Hiroyuki Shinoda, Tomasz M. Rutkowski:
Airborne Ultrasonic Tactile Display BCI. CoRR abs/1501.01144 (2015) - [i3]Tomasz M. Rutkowski, Hiromu Mori, Takumi Kodama, Hiroyuki Shinoda:
Airborne Ultrasonic Tactile Display Brain-computer Interface - A Small Robotic Arm Online Control Study. CoRR abs/1502.07762 (2015) - [i2]Keisuke Hasegawa, Tatsuma Sakurai, Yasutoshi Makino, Hiroyuki Shinoda:
Transmitting Full Set of Alphabet Letters to Human Hand via Writing Motion with 5-minute Training. CoRR abs/1503.07401 (2015) - 2014
- [c64]Trevor Alexander, Anthony Kuh, Katsuhiko Hamada, Hiromu Mori, Hiroyuki Shinoda, Tomasz M. Rutkowski:
Parallel memory-efficient processing of BCI data. APSIPA 2014: 1-9 - [c63]Yasuaki Monnai, Keisuke Hasegawa, Masahiro Fujiwara, Kazuma Yoshino, Seki Inoue, Hiroyuki Shinoda:
Adding Texture to Aerial Images Using Ultrasounds. AsiaHaptics 2014: 59-61 - [c62]Keisuke Hasegawa, Hiroyuki Shinoda:
Generating Vibrotactile Images on the Human Palms. AsiaHaptics 2014: 311-312 - [c61]Tatsuma Sakurai, Hiroyuki Shinoda:
Sharp tactile lines by edge stimulation method. HAPTICS 2014: 1 - [c60]Kazuma Yoshino, Hiroyuki Shinoda:
Contactless 2.5 dimensional touch screen with tactile feedback. HAPTICS 2014: 1 - [c59]Seki Inoue, Hiroyuki Shinoda:
A pinchable aerial virtual sphere by acoustic ultrasound stationary wave. HAPTICS 2014: 89-92 - [c58]Tatsuma Sakurai, Hiroyuki Shinoda:
Sharp tactile line presentation array using edge stimulation method. HAPTICS 2014: 271-275 - [c57]Kazuma Yoshino, Hiroyuki Shinoda:
Contactless touch interface supporting blind touch interaction by aerial tactile stimulation. HAPTICS 2014: 347-350 - [c56]Masahiro Fujiwara, Hiroyuki Shinoda:
Coaxial noncontact surface compliance distribution measurement for muscle contraction sensing. HAPTICS 2014: 385-389 - [c55]Yuta Kudo, Akihito Noda, Hiroyuki Shinoda:
UWB sensor network on 2-D waveguide sheet. SAS 2014: 339-342 - [c54]Seki Inoue, Koseki J. Kobayashi-Kirschvink, Yasuaki Monnai, Keisuke Hasegawa, Yasutoshi Makino, Hiroyuki Shinoda:
HORN: the hapt-optic reconstruction. SIGGRAPH Emerging Technologies 2014: 11:1 - [c53]Yasuaki Monnai, Keisuke Hasegawa, Masahiro Fujiwara, Kazuma Yoshino, Seki Inoue, Hiroyuki Shinoda:
HaptoMime: mid-air haptic interaction with a floating virtual screen. UIST 2014: 663-667 - [i1]Katsuhiko Hamada, Hiromu Mori, Hiroyuki Shinoda, Tomasz M. Rutkowski:
Airborne Ultrasonic Tactile Display Brain-computer Interface Paradigm. CoRR abs/1404.4184 (2014) - 2013
- [c52]Keisuke Hasegawa, Hiroyuki Shinoda:
Aerial display of vibrotactile sensation with high spatial-temporal resolution using large-aperture airborne ultrasound phased array. World Haptics 2013: 31-36 - [c51]Masahiro Fujiwara, Hiroyuki Shinoda:
Noncontact human force capturing based on surface hardness measurement. World Haptics 2013: 85-90 - [c50]Tatsuma Sakurai, Hiroyuki Shinoda, Masashi Konyo:
Sharp tactile sensation using superposition of vibrotactile stimuli in different phases. World Haptics 2013: 235-240 - [c49]Kazuma Yoshino, Hiroyuki Shinoda:
Visio-Acoustic screen for contactless touch interface with tactile sensation. World Haptics 2013: 419-423 - 2012
- [c48]Yasuaki Monnai, Volker Viereck, Hartmut Hillmer, Kristian Altmann, Christian Jansen, Martin Koch, Hiroyuki Shinoda:
Terahertz beam steering using structured MEMS surfaces for networked wireless sensing. INSS 2012: 1-3 - [c47]Akihito Noda, Hiroyuki Shinoda:
A wireless and batteryless sensor node powered via 2-D waveguide sheet. INSS 2012: 1-7 - [c46]Akihito Noda, Hiroyuki Shinoda:
Passive UHF RFID tag localization on 2D waveguide sheet using single reader and phased array coupler. INSS 2012: 1-4 - [c45]Takuya Okuyama, Akihito Noda, Hiroyuki Shinoda:
30W wireless power transmission to networked robots through 2D waveguide. INSS 2012: 1-5 - 2011
- [c44]Hiroyuki Shinoda:
Noncontact Haptic Interface Using Ultrasound. HAID 2011: 120-127 - [c43]Masahiro Fujiwara, Kei Nakatsuma, Masafumi Takahashi, Hiroyuki Shinoda:
Remote measurement of surface compliance distribution using ultrasound radiation pressure. World Haptics 2011: 43-47 - [c42]Yasutoshi Makino, Takashi Maeno, Hiroyuki Shinoda:
Perceptual characteristic of multi-spectral vibrations beyond the human perceivable frequency range. World Haptics 2011: 439-443 - [c41]Takuya Handa, Tadahiro Sakai, Hiroyuki Shinoda:
Evaluation of size and shape perception in multi-finger haptic system. World Haptics 2011: 523-528 - [c40]Katsunari Sato, Hiroyuki Shinoda, Susumu Tachi:
Finger-shaped thermal sensor using thermo-sensitive paint and camera for telexistence. ICRA 2011: 1120-1125 - [c39]Kei Nakatsuma, Hiroyuki Shinoda, Yasutoshi Makino, Katsunari Sato, Takashi Maeno:
Touch interface on back of the hand. SIGGRAPH Emerging Technologies 2011: 19 - [c38]Kei Nakatsuma, Hiroyuki Shinoda, Yasutoshi Makino, Katsunari Sato, Takashi Maeno:
Touch interface on back of the hand. SIGGRAPH Posters 2011: 39 - 2010
- [j4]Hiroyuki Shinoda, Yasutoshi Makino, Naoshi Yamahira, Hiroto Itai:
Two-Dimensional Wireless Power Supply to Ubiquitous Robots Using Microwaves. J. Robotics Mechatronics 22(6): 777-783 (2010) - [j3]Hiroyuki Shinoda, Hiromasa Chigusa, Yasutoshi Makino:
Flexible Tactile Sensor Skin Using Wireless Sensor Elements Coupled with 2D Microwaves. J. Robotics Mechatronics 22(6): 784-789 (2010) - [j2]Takayuki Hoshi, Masafumi Takahashi, Takayuki Iwamoto, Hiroyuki Shinoda:
Noncontact Tactile Display Based on Radiation Pressure of Airborne Ultrasound. IEEE Trans. Haptics 3(3): 155-165 (2010) - [c37]Kei Nakatsuma, Hiroyuki Shinoda:
High accuracy position and orientation detection in two-dimensional communication network. CHI 2010: 2297-2306 - [c36]Kei Nakatsuma, Yuichi Tanno, Hiroyuki Shinoda:
A demonstration of position and orientation sensor for two-dimensional communication networks. UbiComp (Adjunct Papers) 2010: 371-372 - [c35]Yasuaki Monnai, Hiroyuki Shinoda:
Microwave phased array sheet for wireless sensor network. INSS 2010: 123-129 - [c34]Akihito Noda, Hiroyuki Shinoda:
The lower-bound of electromagnetic leakage of 2D wireless power transmission. INSS 2010: 138-144
2000 – 2009
- 2009
- [c33]Takayuki Hoshi, Takayuki Iwamoto, Hiroyuki Shinoda:
Non-contact tactile sensation synthesized by ultrasound transducers. WHC 2009: 256-260 - [c32]Takayuki Hoshi, Daisu Abe, Hiroyuki Shinoda:
Adding tactile reaction to hologram. RO-MAN 2009: 7-11 - [c31]Takayuki Hoshi, Masafumi Takahashi, Kei Nakatsuma, Hiroyuki Shinoda:
Touchable holography. SIGGRAPH Emerging Technologies 2009: 23:1 - 2008
- [c30]Takayuki Iwamoto, Mari Tatezono, Hiroyuki Shinoda:
Non-contact Method for Producing Tactile Sensation Using Airborne Ultrasound. EuroHaptics 2008: 504-513 - [c29]Takayuki Iwamoto, Mari Tatezono, Takayuki Hoshi, Hiroyuki Shinoda:
Airborne ultrasound tactile display. SIGGRAPH New Tech Demos 2008: 1 - [c28]Kei Nakatsuma, Yasutoshi Makino, Hiroyuki Shinoda, Hiroto Itai:
Two-dimensional communication. SIGGRAPH New Tech Demos 2008: 40 - [c27]Kei Nakatsuma, Yasutoshi Makino, Hiroyuki Shinoda:
Node self-localization in the "Two-Dimensional Communication" networks. SIGGRAPH Posters 2008: 93 - 2007
- [c26]Takayuki Iwamoto, Hiroyuki Shinoda:
Finger Ring Tactile Interface Based on Propagating Elastic Waves on Human Fingers. WHC 2007: 145-150 - [c25]Hiromasa Chigusa, Yasutoshi Makino, Hiroyuki Shinoda:
Large Area Sensor Skin based on Two-Dimensional Signal Transmission Technology. WHC 2007: 151-156 - [c24]Takayuki Hoshi, Hiroyuki Shinoda:
Free-Form Tactile Sensor Using 3-Dimensional Shape Capture Sheet. WHC 2007: 403-408 - [c23]Yasutoshi Makino, Hiroyuki Shinoda:
Comfortable Wristband Interface Measuring Myoelectric Pattern. WHC 2007: 433-438 - 2006
- [c22]Takayuki Iwamoto, Hiroyuki Shinoda:
Two-dimensional Scanning Tactile Display using Ultrasound Radiation Pressure. HAPTICS 2006: 8 - [c21]Takayuki Hoshi, Hiroyuki Shinoda:
A Sensitive Skin Based on Touch-Area-Evaluating Tactile Elements. HAPTICS 2006: 15 - [c20]Takayuki Hoshi, Hiroyuki Shinoda:
Robot Skin based on Touch-area-sensitive Tactile Element. ICRA 2006: 3463-3468 - 2005
- [c19]Takayuki Iwamoto, Hiroyuki Shinoda:
Ultrasound Tactile Display for Stress Field Reproduction -- Examination of Non-Vibratory Tactile Apparent Movement. WHC 2005: 220-228 - [c18]Yasutoshi Makino, Hiroyuki Shinoda:
Selective Stimulation to Superficial Mechanoreceptors by Temporal Control of Suction Pressure. WHC 2005: 229-234 - 2004
- [c17]Yasutoshi Makino, Naoya Asamura, Hiroyuki Shinoda:
Multi Primitive Tactile Display Based on Suction Pressure Control. HAPTICS 2004: 90-97 - [c16]Yasutoshi Makino, Naoya Asamura, Hiroyuki Shinoda:
A Whole Palm Tactile Display using Suction Pressure. ICRA 2004: 1524-1529 - 2003
- [c15]Hiroyuki Shinoda, Naoya Asamura, Mitsuhiro Hakozaki, Xinyu Wang:
Two-dimensional signal transmission technology for robotics. ICRA 2003: 3207-3212 - 2002
- [c14]Mitsuhiro Hakozaki, Hiroyuki Shinoda:
Digital Tactile Sensing Elements Communicating through Conductive Skin Layers. ICRA 2002: 3813-3817 - 2001
- [c13]Naoya Asamura, Tomoyuki Shinohara, Yoshiharu Tojo, Hiroyuki Shinoda:
Necessary Spatial Resolution for Realistic Tactile Feeling Display. ICRA 2001: 1851-1856 - 2000
- [c12]Hiroyuki Shinoda, Shinya Sasaki, Katsuhiko Nakamura:
Instantaneous Evaluation of Friction Based on ARTC Tactile Sensor. ICRA 2000: 2173-2178 - [c11]Hiroyuki Shinoda, Hideki Oasa:
Passive wireless sensing element for sensitive skin. IROS 2000: 1516-1521
1990 – 1999
- 1999
- [c10]Mitsuhiro Hakozaki, Hideki Oasa, Hiroyuki Shinoda:
Telemetric Robot Skin. ICRA 1999: 957-961 - [c9]Naoya Asamura, Nozomu Yokoyama, Hiroyuki Shinoda:
A Method of Selective Stimulation to Epidermal Skin Receptors for Realistic Touch Feedback. VR 1999: 274-281 - 1998
- [j1]Naoya Asamura, Nozomu Yokoyama, Hiroyuki Shinoda:
Selectively Stimulating Skin Receptors for Tactile Display. IEEE Computer Graphics and Applications 18(6): 32-37 (1998) - [c8]Hiroyuki Shinoda, Nozomu Yokoyama, Naruyuki Tomori:
Tactile Feeling Display Based on Selective Stimulation to Skin Mechanoreceptors. ICRA 1998: 680-686 - [c7]Naoya Asamura, Naruyuki Tomori, Hiroyuki Shinoda:
A tactile feeling display based on selective stimulation to skin receptors. VRAIS 1998: 36-42 - 1997
- [c6]Hiroyuki Shinoda, Kenichi Matsumoto, Shigeru Ando:
Acoustic resonant tensor cell for tactile sensing. ICRA 1997: 3087-3092 - 1996
- [c5]Hiroyuki Shinoda, Shigeru Ando:
A tactile sensor with 5-D deformation sensing element. ICRA 1996: 7-12 - 1995
- [c4]Hiroyuki Shinoda, Naoki Morimoto, Shigeru Ando:
Tactile Sensing Using Tensor Cell. ICRA 1995: 825-830 - 1994
- [c3]Hiroyuki Shinoda, Shigeru Ando:
Ultrasonic Emission Tactile Sensor for Contact Localization and Characterization. ICRA 1994: 2536-2543 - 1993
- [c2]Hiroyuki Shinoda, Masahiro Uehara, Shigeru Ando:
A Tactile Sensor Using Three-Dimensional Structure. ICRA (1) 1993: 435-441 - 1992
- [c1]Hiroyuki Shinoda, Shigeru Ando:
A tactile sensing algorithm based on elastic transfer function of surface deformation. ICASSP 1992: 589-592
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 2025-01-20 22:47 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint