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Tsuyoshi Nakayama
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2020 – today
- 2024
- [c14]Xu Han
, Mina Shibasaki
, Saki Sakaguchi
, Asuka Mano
, Tsuyoshi Nakayama
, Yuji Higashi
, Kumiko Kushiyama
:
Visualization Methods for Manual Wheelchair Training: Impact on Communication Between Coaches and Users. SIGGRAPH Asia Posters 2024: 110:1-110:2 - 2023
- [c13]Kunihiro Ogata, Kosuke Takano, Nobuto Matsuhira, Tsuyoshi Nakayama:
A Simple Simulation System for Quantifying Buttock Loads Caused by Daily Activities of Wheelchair Users. EMBC 2023: 1-4 - 2022
- [c12]Ikushi Yoda, Kazuyuki Itoh, Tsuyoshi Nakayama:
Extended Mouth/Tongue Gesture Recognition Module for People with Severe Motor Dysfunction. ICCHP-AAATE (1) 2022: 363-370 - 2020
- [c11]Ikushi Yoda, Tsuyoshi Nakayama, Kazuyuki Itoh, Daisuke Nishida
, Katsuhiro Mizuno:
Application of Gesture Interface to Transcription for People with Motor Dysfunction. ICCHP (2) 2020: 343-347 - [c10]Ikushi Yoda, Yuki Ozawa, Daisuke Nishida
, Katsuhiro Mizuno, Kazuyuki Itoh, Tsuyoshi Nakayama:
Gesture-based control for People Persons with Severe Motor Dysfunction by AAGI. LifeTech 2020: 63-64
2010 – 2019
- 2019
- [c9]Kunihiro Ogata, Shingo Hasegawa, Tsuyoshi Nakayama, Nobuto Matsuhira, Eiichi Ono:
Motions of Propelling a Wheelchair Based on the Movement Function of People with Spinal Cord Injury. SII 2019: 385-390 - 2017
- [j3]Kunihiro Ogata, Tokio Umino, Tsuyoshi Nakayama, Eiichi Ono, Toshiaki Tsuji
:
Dummy humanoid robot simulating several trunk postures and abdominal shapes - Report of element technologies. Adv. Robotics 31(6): 303-310 (2017) - [j2]Kazuyuki Itoh, Tsuyoshi Nakayama, Kengo Komoto:
Mouse Operation Support Application for People Suffering from Neuromuscular Disease with Muscular Depression. J. Adv. Comput. Intell. Intell. Informatics 21(2): 301-309 (2017) - [c8]Ikushi Yoda, Kazuyuki Itoh, Tsuyoshi Nakayama:
Modular Gesture Interface for People with Severe Motor Dysfunction: Foot Recognition. AAATE Conf. 2017: 725-732 - [c7]Kunihiro Ogata, Kohei Kanaya, Tsuyoshi Nakayama, Mitsuo Umezu, Eiichi Ono:
Buttock dummy consisting of force sensors and soft material for the validation of deep tissue injury risk. SII 2017: 924-929 - 2016
- [j1]Kunihiro Ogata, Tomoya Kawamura, Eiichi Ono, Tsuyoshi Nakayama, Nobuto Matsuhira:
Upper Body of Dummy Humanoid Robot with Exterior Deformation Mechanism for Evaluation of Assistive Products and Technologies. J. Robotics Mechatronics 28(4): 600-608 (2016) - [c6]Ikushi Yoda
, Kazuhiko Ito, Tsuyoshi Nakayama:
Long-Term Evaluation of a Modular Gesture Interface at Home for Persons with Severe Motor Dysfunction. HCI (8) 2016: 102-114 - [c5]Akihiko Hanafusa, Tsuyoshi Nojiri, Tsuyoshi Nakayama:
Development and Evaluation of Navigation System with Voice and Vibration Output Specialized for Persons with Higher Brain Dysfunction. ICCHP (2) 2016: 273-280 - [c4]Shingo Hasegawa, Nobuto Matsuhira, Kunihiro Ogata, Eiichi Ono, Tsuyoshi Nakayama:
Motion analysis of wheelchair considering the pectoral girdle mechanism. SII 2016: 120-125 - [c3]Kohei Kanaya, Kunihiro Ogata, Tsuyoshi Nakayama, Eiichi Ono, Mitsuo Umezu:
Buttock dummy with force sensors for assessment of deep tissue injury risk. SII 2016: 496-501 - 2015
- [c2]Ikushi Yoda
, Kazuyuki Itoh, Tsuyoshi Nakayama:
Collection and Classification of Gestures from People with Severe Motor Dysfunction for Developing Modular Gesture Interface. HCI (8) 2015: 58-68
2000 – 2009
- 2001
- [c1]Tsuyoshi Nakayama, Noriyuki Tejima, Shigeru Yamauchi:
Usage of a stenographic typewriter for the hearing impaired at NRCD in Japan. HCI 2001: 392-396
Coauthor Index

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last updated on 2024-12-23 19:28 CET by the dblp team
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