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Yomei Sakaide, Yoshiyuki Matsumura
Session ID: A01
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Toshie Tani, Yoshiyuki Matsumura
Session ID: A02
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Ryohei Arakaki, Hirofumi Fukumaru, Akihiro Hayashi, Toshifumi Satake
Session ID: A03
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Yutaro Chida, Toshifumi Satake, Naoki Igo, Akihiro Hayashi
Session ID: A04
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Haruna Nakazawa, Keita Nakamura, Keitaro Naruse
Session ID: A05
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Yuta Mizumoto, Philipp Maas, Sangkee Min, Yasuhiro Kakinuma
Session ID: A07
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Hirofumi Suzuki, Mutsumi Okada, Yoshiharu Namba, Eiji Katoh, Masahiro ...
Session ID: A08
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Yusuke Akiyama, Mutsumi Okada, Hirofumi Suzuki, Yoshiharu Nanba, Takes ...
Session ID: A09
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Masaaki Adachi
Session ID: B01
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Toru Kaku, Tatsuki Tahara, Imari Sato, SangWook Lee, Takuro Ito, Osamu ...
Session ID: B03
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Kazufumi Takeda, Masayuki Yokota
Session ID: B04
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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The measurement of the inner surface profile of a straight pipe by using multi-wavelength digital holography has been conducted. To illuminate the pipe inner surface, a cone-shaped mirror is inserted in the pipe and the reflected light from the mirror becomes object wave and is recorded as hologram. When the center of the cone-shaped mirror deviates and/or inclines from the pipe axis, a crucial error occurs by superimposing asymmetric optical paths on the experimental profile. To correct the error, we have proposed the correction method in which both the deviation and the inclination of mirror was taken into account. In this paper, we propose the automatic error correction method in which the estimation of center in the reconstructed image has been improved. We have also performed experimental verification of the correction method using a ring gauge with the inner diameter of 13.97 mm.
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Yasuhiko Arai, Shunsuke Yokozeki
Session ID: B06
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Yoshiyuki Higashida, Yasuhiko Arai
Session ID: B07
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Isami Nitta, Yuta Ohara, Yosuke Tsukiyama
Session ID: B08
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Katsuichi Kitagawa, Jun Mizojiri
Session ID: B09
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Masaaki Adachi
Session ID: B13
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Daisuke Yamaguchi, Kazuhide Kamiya, Kimihisa Matsumoto, Takashi Nomura ...
Session ID: B14
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Yukitoshi Otani, Shuhei Shibata, Hiroshi Ishiwata, Masaru Matsuda, Toy ...
Session ID: B15
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Keita Mori, Kosuke Nogo, Mituhiro Yoshida, Congtao Wang, Ichiro Ishima ...
Session ID: B16
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Takeo Minamikawa, Eiji Hase, Shuji Miyamoto, Yi-Da Hsieh, Yasuhiro Miz ...
Session ID: B18
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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In this paper, we proposed a novel confocal microscopy that required no mechanical laser scanner but provided two-dimensional image with high depth resolution. The scan-less confocal microscopy was realized by employing a wavelength/space dimensional conversion of optical-frequency-comb, in which the spatial information was encoded to the individual comb mode by using two-dimensional dispersers. To decode the spatial information using the encoded optical-frequency-comb spectrum, we performed dual-optical-frequency-comb spectroscopy. We constructed a scan-less confocal microscopy system employing a diffractive grating and a virtually imaged phased array as two-dimensional disperser, and provided a proof-of-principle demonstration of the proposed method.
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Tomohisa Horiguchi, Yukitoshi Otani
Session ID: B19
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Kenta Minami, Hiroshi Sawano
Session ID: B20
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Shigeru Takushima, Hiroyuki Kawano, Hironori Nakahara, Toshiaki Kuroka ...
Session ID: B21
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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We newly developed a running exposure method for displacement measurement of a metal work by using a triangulation method. While the spot of the projected beam is moved in-plane direction of the metal work surface during the exposure time of a image sensor, the reflected light distribution from the metal rough surface is averaged by accumulating reflected light from the plurality of positions. We confirmed that the displacement measurement error is experimentally reduced from 33 μm to 5 μm by this method.
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Toshiyuki Takatsuji
Session ID: B32
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Escamilla/Geliztle A. Parra, Fumio Kobayashi, Yukitoshi Otani
Session ID: B34
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Previously an Uni-axis image guide fiber system to reconstruct the surface of reflective objects is presented. The surface variation of the samples is retrieved by using fringe contrast modulation and the technique takes into account the defocus change and the encoding information on the fringe contrast of the projected structured light pattern. In the second part we implement a 2D Fourier Transform filter for remove the baseline information for increasing the fringes contrast and also we improved the fitting function for better results in the 3D reconstruction. Experimental results will be presented.
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Yuichi Akatsuka, Motoharu Fujigaki, Yorinobu Murata, Toru Matsui
Session ID: B35
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Shin Ninomiya, Shuhei Shibata, Junichiro Sugisaka, Yukitoshi Otani
Session ID: B37
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Hiroki Taguchi, Yasuhiro Mizutani, Yasuhiro Takaya
Session ID: B38
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Mitsuhiko Suzuki, Toshiki Hirogaki, Eiichi Aoyama
Session ID: B39
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Takeo Minamikawa, Takashi Ogura, Takashi Masuoka, Yoshiaki Nakajima, Y ...
Session ID: B62
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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In this paper, we proposed a novel strain sensor employing optical-frequency-comb cavity. The strain sensing was realized by strain/radio-frequency conversion in a fiber-based optical frequency comb cavity. The fiber-based optical frequency comb cavity generated a repetitive pulse train of which the repetition rate was determined by the cavity length. The application of mechanical strain onto the cavity produced the extension or compression of the cavity length, resulting the change of repetition rate of the pulse train. The resultant strain can be detected by observing the change of repetition rate of the pulse train with a frequency analyzer. For a proof-of-principle demonstration, we constructed an Er-doped fiber-based optical frequency comb system for the strain sensing. We demonstrated static and dynamic strain sensing with the developed system, and realized the strain sensitivity of 84.5 nε in the static strain sensing and that of 15 nε in the dynamic strain sensing with 2 m sensing fiber length. Our results demonstrated the efficacy of the strain sensor employing the optical-frequency-comb cavity.
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Shinji Ogawa
Session ID: B63
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Naoyuki Yamamoto, Tsubasa Saito, Satoshi Ogawa, Mizuho Okada, Natsumi ...
Session ID: B64
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Tetsushi Okuyama
Session ID: B65
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Terutake Hayashi, Syuhei Kurokawa, Hideaki Yokoo, Keigo Matsunaga, You ...
Session ID: B67
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Hiroki Takeda, Yasuhiko Arai
Session ID: B68
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Dai Shimizu, Yasuhiko Arai
Session ID: B69
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Haruna Nogami, Nobuyuki Moronuki
Session ID: C01
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Construction of Optical System for Cell Patterning
Shota Hiratsuka, Sho Kawaharada, Shogo Satou, Moeto Nagai, Takayuki Sh ...
Session ID: C02
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Takashi Aoto, Jun Nagasawa, Toshifumi Kanda, Yuto Fujita, Arata Kaneko
Session ID: C03
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Yuya Matsuoka, Takeshi Hatsuzawa, Yasuko Yanagida
Session ID: C04
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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From the view point of biocompatibility, it is desirable to use real bone tissue for reconstructive surgery of skeleton. Bone tissue can be cultured and differentiated from osteoblast, it is difficult to culture cells in vitro to a designed shape. It is known that the growth rate of osteoblast can be enhanced by the mechanical stimulation during the culture. In this study, we had proposed a piezoelectric culture device that can apply different mechanical stimulus simultaneously to the osteoblast, in order to investigate the differentiation conditions of effective bone culture.
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Yuta Onozato, Jongho Park, Yasuko Yanagida, Yoshiyuki Nakano, Tetsuya ...
Session ID: C06
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Masahiro Tomono, Jongho Park, Yasuko Yanagida, Takeshi Hatsuzawa
Session ID: C07
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Ganesh Kumar Mani, Shintaro Takamiya, Yutaka Yasoda, Kazuyoshi Tsuchiy ...
Session ID: C08
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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The detection of temperature and pH at the single-cell level is hoping for the great level of clinical importance for the early detection of many diseases like cancer, diabetes, etc. In this research work, we have fabricated a micro region pH and temperature sensors by series of processes like electrolytic polishing to create needle structure, deposition of electrode materials using sputtering for measurements and finally testing in various biological medium. The structural and morphological properties were analysed using XRD and FE-SEM. The fabricated tip of the microneedle probe is nearly 5μm analysed by laser microscope. pH testing was evaluated using fish egg and the found that results were significant. Seebeck co-efficient observed for the micro region temperature sensors is relatively low compared to theoretical values. Since the sensor works at micro region, the potential difference is easily disturbed by atmospheric anomalies. Hence, the accuracy of the sensor will be further improved in the future.
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Gaku Tsuruzoe, Kazuyoshi Tsuchiya, Ganesh Kumar Mani
Session ID: C09
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Cultured Cell Clusters Dispersed in a Blood
Koukei Kondo, Kazunori Akimoto, Shin Aoki, Masanori Hayase
Session ID: C13
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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High efficiency of stirring by the electric field concentration electrode
Ryuta Nakamura, Yoichi Akagami, Takayuki Kusumi, Yoshihiro Minamiya, H ...
Session ID: C14
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Masaaki Hirano, Youichi Aruga, Katsuhiro Kambara
Session ID: C15
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Integration of Movable Machines and Algae and Light Responsive Actuation
Taiki Nakamizu, Masayuki Nagara, Takayuki Shibata, Moeto Nagai
Session ID: C16
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Development of Fabrication Process for Flat Rectangular Microchannel
Naohiko Satou, Masahiro Yamane, Moeto Nagai, Takayuki Shibata
Session ID: C18
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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Ryosuke Nomura, Masahiro Yamada, Masato Suzuki, Tomokazu Takahashi, Se ...
Session ID: C19
Published: August 20, 2016
Released on J-STAGE: February 20, 2017
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