研究者業績
基本情報
- 所属
- 上智大学 理工学部機能創造理工学科 教授
- 学位
- 学士(工学)(上智大学)修士(工学)(上智大学)博士(工学)(上智大学)
- 研究者番号
- 20431819
- J-GLOBAL ID
- 201301033397542820
- researchmap会員ID
- 7000004659
- 外部リンク
受賞
5-
2022年9月
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2022年9月
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2017年9月
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2010年4月
論文
96-
Scientific Reports 16(1) 2026年4月2日 査読有り責任著者Abstract In the practice of medicine, tracheal intubation is a critical procedure, yet medical education often lacks quantitative instructional methods, relying instead on intuitive guidance from experts. This study used motion capture and eye tracking to analyze differences in movement and gaze between novices and experts during tracheal intubation. It also compared the use of direct and video laryngoscopes. Results showed that with a direct laryngoscope, experts directed their gaze farther than novices during the laryngoscope insertion phase, with a significant difference in eye-to-gaze distance [experts: 0.465 m; novices: 0.325 m; t (12) = 2.690, p = 0.020]. No significant difference was found when a video laryngoscope was used, suggesting that novices could perform expert gaze behavior. Head movement analysis revealed that experts maintained a greater distance from the mannequin’s mouth when using direct laryngoscopes (experts: 0.529 m; novices: 0.331 m). With video laryngoscopes, the gap narrowed (experts: 0.550 m; novices: 0.457 m). A t-test comparing novice head-to-mouth distance between device types showed a significant difference [t (14) = 4.355, p = 0.001]. These findings highlight how video laryngoscopes may help novices approximate expert behavior, offering potential for improved training methods.
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International Design Engineering Technical Conferences & Computers and Information in Engineering Conference (IDETC2025) 2025年8月 査読有り
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Mechanical Engineering Journal 12(4) 24-00437 2025年6月 査読有り責任著者
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Mechanical Engineering Journal 12(3) 2025年4月 査読有り
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The 17th International Conference on Motion and Vibration Control (MoViC 2024) 2024年8月 査読有り責任著者
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The 17th International Conference on Motion and Vibration Control (MoViC 2024) 2024年8月 査読有り
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Automation 3(3) 364-377 2022年7月19日 査読有り責任著者Tethers (strings and wires) are used in various mechanical systems because they are lightweight and have excellent storability. Examples of such systems include elevators and cranes. In recent years, the use of tethers in special environments, such as outer space, is expected, and various systems have been proposed. In this study, we propose a mobility system using a tether that moves a human by winding a tether attached to a wall. However, the method has a problem whereby the attitude of the human can lack stability during the winding of the tether. We developed the attitude control method of the Tether Space Mobility Device during tether winding while focusing on fluctuations in the rotational kinetic energy of systems. The effectiveness of the control method was shown using numerical simulation. In this paper, the proposed control system is installed in the experimental device for validating the numerical simulation model. Then, we verified the effectiveness of the proposed control method through experiments using an actual system. The experimental results confirm that the angular velocity of the Tether Space Mobility Device converges to 0 deg/s when control is applied. In addition, it was shown that the proposed control method is effective for automatically winding the tether.
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Journal of St. Marianna University 13(2) 77-86 2022年 査読有り
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Modelling 2(3) 370-384 2021年8月20日 査読有り責任著者Advances in space technology have opened up opportunities for human beings to work in outer space. It is expected that the upsizing of manned space facilities, such as the International Space Station, will further this trend. A unique means of transportation is necessary to ensure that human beings can move about effectively in microgravity environments. Here, we propose a tether-based mobility system that moves the user by winding a tether attached to a structure at the destination. To overcome the attitude instability of the user during tether winding, the Tether Space Mobility Device (TSMD) attitude control method for winding a tether is applied and examined through numerical analysis. The proposed analytical model for motion analysis consists of one flexible body and three rigid bodies. The contact force between the tether and the TSMD inlet is determined. Using the numerical analysis model, we investigated the effect of slit shape during tether extension and winding.
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Vibration Engineering for a Sustainable Future 219-225 2021年4月26日 査読有り最終著者
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Journal of Biomechanical Science and Engineering 15(1) 2020年 査読有り責任著者
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Journal of St. Marianna University 11(2) 43-52 2020年 査読有り
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IOP Conference Series: Materials Science and Engineering 501(1) 2019年4月 査読有り責任著者
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Journal of St. Marianna University 10(2) 51-61 2019年 査読有り
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Transactions of Nanjing University of Aeronautics and Astronautics 35(1) 20-27 2018年2月1日 査読有り責任著者
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Machines 6(4) 2018年 査読有り筆頭著者責任著者
MISC
78-
ISBS Proceedings Archive 38(1) 2020年7月 責任著者
書籍等出版物
1講演・口頭発表等
3共同研究・競争的資金等の研究課題
6-
日本学術振興会 科学研究費助成事業 基盤研究(C) 2017年4月 - 2022年3月
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日本学術振興会 科学研究費助成事業 2014年4月 - 2018年3月
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公益信託 加藤辰次郎記念建築機械研究開発振興基金 2017年4月 - 2018年3月
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公益財団法人 JKA 2017年4月 - 2018年3月
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日本学術振興会 科学研究費助成事業 2009年 - 2010年