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Fingerprint Junya Suehiroが取り組む研究トピックをご確認ください。これらのトピックラベルは、この人物の研究に基づいています。これらを共に使用することで、固有の認識が可能になります。

  • 4 同様のプロファイル
Electrophoresis Engineering & Materials Science
Carbon nanotubes Engineering & Materials Science
Chemical sensors Engineering & Materials Science
Electrodes Engineering & Materials Science
Partial discharges Engineering & Materials Science
Carbon Nanotubes Chemical Compounds
Electric potential Engineering & Materials Science
Liquid nitrogen Engineering & Materials Science

ネットワーク 最近の共同研究。丸をクリックして詳細を確認しましょう。

研究成果 1987 2019

DNA detection method based on the microbead velocity under traveling wave dielectrophoresis

Ding, Z., Nakano, M. & Suehiro, J., 1 1 2019, BIODEVICES 2019 - 12th International Conference on Biomedical Electronics and Devices, Proceedings; Part of 12th International Joint Conference on Biomedical Engineering Systems and Technologies, BIOSTEC 2019. Roque, A., Fred, A. & Gamboa, H. (版). SciTePress, p. 21-25 5 p. (BIODEVICES 2019 - 12th International Conference on Biomedical Electronics and Devices, Proceedings; Part of 12th International Joint Conference on Biomedical Engineering Systems and Technologies, BIOSTEC 2019).

研究成果: 著書/レポートタイプへの貢献会議での発言

Electrophoresis
DNA
Polymerase chain reaction
RNA
4 引用 (Scopus)

Bacterial detection based on polymerase chain reaction and microbead dielectrophoresis characteristics

Ding, Z., Kasahara, H., Nakano, M. & Suehiro, J., 8 1 2017, : : IET Nanobiotechnology. 11, 5, p. 562-567 6 p.

研究成果: ジャーナルへの寄稿記事

Polymerase chain reaction
Electrophoresis
Microspheres
Bacteria
DNA

Breakup of carbon nanotube aggregates under high electric field and its application to nanocomposite film

Obana, Y., Nakano, M. & Suehiro, J., 2 8 2017, Proceedings of the 2016 IEEE Region 10 Conference, TENCON 2016. Institute of Electrical and Electronics Engineers Inc., p. 3045-3048 4 p. 7848606

研究成果: 著書/レポートタイプへの貢献会議での発言

Nanocomposite films
Carbon nanotubes
Electric fields
Nanocomposites
Nanostructured materials
4 引用 (Scopus)
Polymerase chain reaction
Electrophoresis
Microspheres
Real-Time Polymerase Chain Reaction
DNA