Researchers Database

MAGOME NOBUYUKI

Affiliation: Department of Fundamental Education
Position: Associate Professor
Last Updated :2025/05/09

Profiles

Profiles

  • 氏名

    MAGOME NOBUYUKI

Affiliation

  • Department of Fundamental Education, Associate Professor

Profile and Settings

Research Areas

  • Life Science, Biophysics, nonlinear science

Education

  • Nagoya University, Graduate School of Human Informatics

Research achievements

Published Papers

    Original paper
  • Element analysis applied to investigate acute kidney injury induced by red yeast rice supplement., Abe Makoto;Ogawa Tadayuki;Magome Nobuyuki;Ono Yuko;Tojo Akihiro, Medical molecular morphology, 13 Nov. 2024
  • 108, 203703, 2016
  • Controlling negative and positive photothermal migration of centimeter-sized droplets., Ichikawa Masatoshi;Takabatake Fumi;Miura Keitaro;Iwaki Takafumi;Magome Nobuyuki;Yoshikawa Kenichi, Physical review. E, Statistical, nonlinear, and soft matter physics, 88(1), 012403, 18 Jul. 2013
  • 111, 267-271, 01 Jan. 2013
  • Influence of patterned topographic features on the formation of cardiac cell clusters and their rhythmic activities., Wang L;Liu L;Magome N;Agladze K;Chen Y, Biofabrication, 5(3), 035013, 01 Aug. 2013
  • Plastic bottle oscillator as an on-off-type oscillator: experiments, modeling, and stability analyses of single and coupled systems., Kohira Masahiro I;Kitahata Hiroyuki;Magome Nobuyuki;Yoshikawa Kenichi, Physical review. E, Statistical, nonlinear, and soft matter physics, 85(2 Pt 2), 026204, 03 Feb. 2012
  • Curvature-Dependent Excitation Propagation in Cultured Cardiac Tissue., Kadota S;Kay M W;Magome N;Agladze K, JETP letters, 94(11), 824-830, 04 Feb. 2012
  • 94, 838-844, 01 Jan. 2011
  • Spontaneous mode-selection in the self-propelled motion of a solid/liquid composite driven by interfacial instability., Takabatake Fumi;Magome Nobuyuki;Ichikawa Masatoshi;Yoshikawa Kenichi, The Journal of chemical physics, 134(11), 114704, 21 Mar. 2011
  • Electrospun nanofibers as a tool for architecture control in engineered cardiac tissue., Orlova Yuliya;Magome Nobuyuki;Liu Li;Chen Yong;Agladze Konstantin, Biomaterials, 32(24), 5615-5624, 20 May 2011
  • Photo-control of excitation waves in cardiomyocyte tissue culture., Magome Nobuyuki;Kanaporis Giedrius;Moisan Nicolas;Tanaka Koichiro;Agladze Konstantin, Tissue engineering. Part A, 17(21-22), 2703-2711, 11 Aug. 2011
  • 511, 447-451, 01 Jan. 2011
  • 239, 1560-1566, 01 Jan. 2010
  • Photomanipulation of a droplet by the chromocapillary effect., Diguet Antoine;Guillermic Reine-Marie;Magome Nobuyuki;Saint-Jalmes Arnaud;Chen Yong;Yoshikawa Kenichi;Baigl Damien, Angewandte Chemie (International ed. in English), 48(49), 9281-9284, 2009
  • 5, 103-111, 01 Jan. 2009
  • 112, 3032-3035, 2008
  • 456, 80-83, 01 Jan. 2008
  • 75, 893-895, 2007
  • 429, 321-325, 2006
  • 161, 348-351, 2006
  • Self-running droplet: emergence of regular motion from nonequilibrium noise., Sumino Yutaka;Magome Nobuyuki;Hamada Tsutomu;Yoshikawa Kenichi, Physical review letters, 94(6), 068301, 14 Feb. 2005
  • 414, 389-392, 2005
  • 72, 041603_1-041603_4, 2005
  • Chemosensitive running droplet., Sumino Yutaka;Kitahata Hiroyuki;Yoshikawa Kenichi;Nagayama Masaharu;Nomura Shin-ichiro M;Magome Nobuyuki;Mori Yoshihito, Physical review. E, Statistical, nonlinear, and soft matter physics, 72(4 Pt 1), 041603, 10 Oct. 2005
  • Forward and backward laser-guided motion of an oil droplet., Rybalko Sergei;Magome Nobuyuki;Yoshikawa Kenichi, Physical review. E, Statistical, nonlinear, and soft matter physics, 70(4 Pt 2), 046301, 05 Oct. 2004
  • 66, 545-551, 2004
  • 83, 2557-2559, 2003
  • 107, 3988-3990, 2003
  • Rhythmic bursting in a cluster of microbeads driven by a continuous-wave laser beam., Magome Nobuyuki;Kitahata Hiroyuki;Ichikawa Masatoshi;Nomura Shin-ichiro M;Yoshikawa Kenichi, Physical review. E, Statistical, nonlinear, and soft matter physics, 65(4 Pt 2A), 045202, 01 Apr. 2002
    Other
  • 48回, 113-114, Nov. 2005
  • 49(2), 133, Dec. 2022
  • 79(Suppl.), S219, Mar. 2024

Books etc

  • How to drive macro-object by use of nano-molecular machinery, Joint work


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