Moriya Tadashi | Department Of Electrical Engineering Tokyo Metropolitan University
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概要
関連著者
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Moriya Tadashi
Department Of Electrical Engineering Tokyo Metropolitan University
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MORIYA Tadashi
Department of Electrical Engineering, Tokyo Metropolitan University
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Tagawa Norio
Depart. Of Mechanical Engineering High Technology Research Center Kansai University
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Tagawa Norio
Department Of Electrical Engineering Tokyo Metropolitan University
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Yoshizawa Masasumi
Tokyo Metropol. Coll. Of Industrial Tech.
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Tagawa N
Tokyo Metropolitan Univ. Tokyo Jpn
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Tagawa Norio
Tokyo Metropolitan Univ.
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Moriya Tadashi
Tokyo Metropolitan Univ.
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Moriya T
Graduate School Of Engineering Tokyo Metropolitan University
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Moriya T
Institute Of Material Science University Of Tsukuba
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Moriya Tsuyoshi
Institute Of Material Science University Of Tsukuba
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Moriya T
Tokyo Metropolitan University Graduate School Of Engineering
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TOYAMA Masaharu
Toshiba Research and Development Center
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Yoshizawa M
Tokyo Metropolitan Technical College
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YAGI Shuhei
Department of Physical Electronics, Tokyo Institute of Technology
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Yagi S
Department Of Physical Electronics Tokyo Institute Of Technology
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Yagi Syuhei
Department Of Physical Electronics Tokyo Institute Of Technology
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YOSHIZAWA Masasumi
Department of Electrical Engineering, Tokyo Metropolitan University
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YAGI Shin-ichi
Department of Electronics and Computer Science, Meisei University
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Yagi S
Meisei Univ. Tokyo Jpn
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Yagi Shin-ichi
Department Of Electrical & Electronics Engineering College Of Science & Technology Sophia Un
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HATAKEYAMA Rokuro
Department of Electrical Engineering, Tokyo Metropolitan University
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YOSHIZAWA Masasumi
Tokyo Metropolitan Technical College
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SHIKANO Kiyokazu
Department of Electrical Engineering, Tokyo Metropolitan University
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Shikano Kiyokazu
Department Of Electrical Engineering Tokyo Metropolitan University
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Hatakeyama Rokuro
Department Of Electrical Engineering Tokyo Metropolitan University
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Takamura Yoshihiro
Medical Imaging Laboratory Graduate School Of Information Science Meisei University
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HASHIMOTO Yoshikazu
Medical Imaging Laboratory, Graduate School of Information Science, Meisei University
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SUZUKI Toshio
Department of Animal Science, Faculty of Agriculture, Utsunomiya University
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SUZUKI TATSUYA
Graduate School of Engineering, Nagoya University
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SEKI Masahiro
NTT Applied Electronics Laboratories
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MINOHARA SHINICHI
Division of Accelerator Physics and Engineering, National Institute of Radiological Sciences
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Minagawa Akihiro
Department Of Electrical Engineering Tokyo Metropolitan University
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Minohara Shinichi
National Institute Of Radiological Sciences
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Minohara Shinichi
Division Of Accelerator Physics Engineering National Institute Of Radiological Science
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Minohara Shinichi
Division Of Accelerator Physics And Engineering National Institute Of Radiological Sciences
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Yoshizawa Masasumi
Tokyo Metropolitan College Of Technology
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Suzuki Tatsuya
Department Of Electronic-mechanical Engineering Graduate School Of Engineering Nagoya University
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Suzuki Tatsuya
Department Of Mechanical Science And Engineering Graduate School Of Engineering Nagoya University
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YAGI Shin-ichi
Medical Imaging Laboratory, Graduate School of Information Science, Meisei University
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YAMAGUCHI Hirokuni
Department of Electrical Engineering, Tokyo Metropolitan University
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OSHIZAWA Masasumi
Tokyo Metropolitan College of Technology
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WATANABE Eiki
Department of Electrical Engineering, Tokyo Metropolitan University
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Watanabe Eiki
Department Of Electrical Engineering Tokyo Metropolitan University
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Watanabe Eiki
Department Of Applied Chemistry Faculty Of Engineering Oita University
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Suzuki T
Shizuoka Univ. Hamamatsu‐shi Jpn
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Yagi Shin-ichi
Medical Imaging Laboratory Graduate School Of Information Science Meisei University
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Morita Tadashi
Department Of Electrical Engineering Tokyo Metropolitan University
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Suzuki Toshio
Department Of Agronomy Faculty Of Agriculture Tohoku University
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Yoshizawa Masazumi
Tokyo Metropolitan Technical College
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KIRYU Syogo
Department of Electrical Engineering, Tokyo Metropolitan University
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FUSE Tadashi
Department of Electrical Engineering, Tokyo Metropolitan University
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Seki Masahiro
Ntt Advanced Technology
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Kiryu Syogo
Department Of Electrical Engineering Tokyo Metropolitan University
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Fuse Tadashi
Department Of Electrical Engineering Tokyo Metropolitan University
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Fuse Tadashi
Department Of Electrical Engineering Faculty Of Engineering Shonan Institute Of Technology
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Furukawa Yuji
Department Of Material Science Graduate School Of Science And Technology Kobe University
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Yamaguchi Hirokuni
Department Of Electrical Engineering Tokyo Metropolitan University
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Nakamura Yuuta
Tokyo Metropol. Coll. Of Industrial Tech.
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Ishiguro Masataka
Tokyo Metropol. Coll. Of Industrial Tech.
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Xie Shangping
Department of Electrical Engineering, Tokyo Metropolitan University, Hachioji, Tokyo 192-0397, Japan
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Tanabe Masayuki
Department of Information and Communication Systems Engineering, Tokyo Metropolitan University, Hachioji, Tokyo 192-0397, Japan
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Minagawa Akihiro
Department of Electrical Engineering, Tokyo Metropolitan University, 1-1 Minami-Osawa, Hachioji-shi, Tokyo 192-0397, Japan
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Moriya Tadashi
Department of Electrical Engineering, Tokyo Metropolitan University, 1-1 Minami-Ohsawa, Hachioji, Tokyo 192-0397, Japan
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Moriya Tadashi
Department of Electrical Engineering, Tokyo Metropolitan University, Tokyo 192-0397, Japan
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Moriya Tadashi
Department of Electrical Engineering, Tokyo Metropolitan University, 1-1 Minami-Osawa, Hachioji-shi, Tokyo 192-0397, Japan
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Hashimoto Yoshikazu
Medical Imaging Laboratory, Graduate School of Information Science, Meisei University, Tokyo 198-8655, Japan
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Takamura Yoshihiro
Medical Imaging Laboratory, Graduate School of Information Science, Meisei University, Tokyo 198-8655, Japan
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FURUKAWA Yuji
Department of Applied Biological Chemistry, Faculty of Agriculture, Tohoku University
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Minohara Shinichi
National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba-shi 263-8555, Japan
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Osanai Yoji
Department of Electrical Engineering, Tokyo Metropolitan University, 1-1 Minami-Osawa, Hachioji-shi, Tokyo 192-0397, Japan
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Moriya Tadashi
Department of Information and Communication Systems Engineering, Tokyo Metropolitan University, Hachioji, Tokyo 192-0397, Japan
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Moriya Tadashi
Department of Electrical Engineering, Tokyo Metropolitan University, 1-1 Minamioosawa, Hachioji, Tokyo 192-0397, Japan
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Komiya Yuuichirou
Tokyo Metropolitan College of Industrial Technology, 1-10-40 Higashiohi, Shinagawa-ku, Tokyo 140-0011, Japan
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Yagi Shin-ichi
Medical Imaging Laboratory, Graduate School of Information Science, Meisei University, Tokyo 198-8655, Japan
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Nakamura Yuuta
Tokyo Metropolitan College of Technology, 1-10-40 Higashiohi, Shinagawa-ku, Tokyo 140-0011, Japan
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Tagawa Norio
Department of Information and Communication Systems Engineering, Tokyo Metropolitan University, Hachioji, Tokyo 192-0397, Japan
著作論文
- Measurement of Speed of Sound in Skull Bone and Its Thickness Using a Focused Ultrasonic Wave
- Focusing Method in High-Impedance Material using Transmission Line Coupler : Ultrasonic Transmission Line Coupling Method
- Analysis of High-Lateral-Resolution Imaging Using Thin Quartz Fibers as Transmission Lines
- Ultrasonic Flaw Detection for High Impedance Materials Using a Transmission Line Coupling Method
- High Signal-to-Noise Ratio Ultrasonic Point Detection Method using a Fused Quartz Rod as a Pulse Compression Filter and a Sensor
- Wide View-Angle Imaging Obtained by Compounding Multidirection Images through a Narrow Window
- Cost-Effective Unbiased Straight-Line Fitting to Multi-Viewpoint Range Data (Special Section of Selected Papers from the 9th Karuizawa Workshop on Circuits and Systems)
- Computing 2-D Motion Field with Multi-Resolution Images and Cooperation of Gradient-Based and Matching-Based Schemes
- Tracer for Ultrasonic Flow Visualization of Water/Solid Microparticle Suspension
- A Method for the Measurement of Acoustic Impedance and Speed of Sound in a Small Region of Bone using a Fused Quartz Rod as a Transmission Line
- A Method for Suppressing the Unwanted Signal Due to the L(0,2) Mode in an L(0,3) Mode Pulse Compression Filter by Means of a Tapered Cylindrical Fused Quartz Rod : Ultrasonic Transduction
- Measurement of Acoustic Impedance of Capsuled Tissue Sample by Interference Method using Fused Quartz Rod as a Transmission Line (国際セッションIS-EMD2002〔英文〕)
- Development of a Mechanical Scanning-type Intravascular Ultrasound System Using a Miniature Ultrasound Motor
- Transducer Vibration Method for Interference-Based Reflection-Type In Vivo Measurement for Acoustic Impedance of Bone
- Attenuation Compensation of Ultrasonic Wave in Soft Tissue for Acoustic Impedance Measurement of In vivo Bone by Transducer Vibration Method
- Analysis of High-Lateral-Resolution Imaging Using Thin Quartz Fibers as Transmission Lines
- Automatic Tracking of Region of Interest in Sonograms Using Respiratory Information