Miyano Takaya | Department Of Micro System Technology Ritsumeikan University
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概要
関連著者
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Miyano Takaya
Department Of Micro System Technology Ritsumeikan University
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MIYANO Takaya
Department of Micro System Technology, Ritsumeikan University
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Tsutsui Takako
Department Of Health And Social Services National Institute Of Public Health
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TSUTSUI Takako
Department of Health and Social Services, National Institute of Public Health
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NISHIMURA Kazuhiro
Denso Corporation
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YOSHIDA Yusuke
Department of Micro System Technology, Ritsumeikan University
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Tsutsui Takako
National Inst. Of Public Health Wako‐shi Jpn
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SUGIYAMA Susumu
Department of Micro System Technology, Faculty of Science and Engineering, Ritsumeikan University
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Tachikawa Hiroto
Department Of Materials Chemistry Faculty Of Engineering Hokkaido University
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Sugiyama Susumu
Department Of Micro System Technology Ritsumeikan University
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Takano Naoki
Department Of Manufacturing Science Osaka University
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Miyano Takaya
Ritsumeikan Univ. Kusatsu‐shi Jpn
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ABE Yuhei
Department of Micro System Technology, Ritsumeikan University
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Abe Yuhei
Department Of Micro System Technology Ritsumeikan University
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Yoshida Yusuke
Department Of Chemistry And Institute For Advanced Materials Research Hiroshima University
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Yoshida Yusuke
Department Of Micro System Technology Ritsumeikan University
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Higashino Sadanori
Graduate School of Administration and Informatics, The University of Shizuoka
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NISHIYABU Kazuaki
Department of Mechanical Engineering, Osaka Prefectural College of Technology
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NISHIYABU Kazuaki
Department of Industrial Systems Engineering, Osaka Prefectural College of Technology
著作論文
- Finding Major Patterns of Aging Process by Data Synchronization
- Link of Data Synchronization to Self-Organizing Map Algorithm
- Application of Collective Synchronization to Sensor Data Processing
- Feature extraction and hypothesis testing using collective synchronization in a network of nonsymmetrically coupled phase oscillators
- Chaos-Based Communications Using Open-Plus-Closed-Loop Control
- Insertion Testing of Polyethylene Glycol Microneedle Array into Cultured Human Skin with Biaxial Tension