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深川暁宏 研究業績一覧 (20件)
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論文
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Akihiro FUKAGAWA,
Michio HIROSHIMA,
Isao SAKANE,
Makio TOKUNAGA.
Direct Observation of Multiple and Stochastic Transition States by a Feedback-controlled Single-molecule Force Measurement,
ANALYTICAL SCIENCES,
Vol. 25,
No. 1,
pp. 5-7,
Jan. 2009.
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Akihiro Fukagawa,
Michio Hiroshima,
Isao Sakane,
Makio Tokunaga.
Stochastic emergence of multiple intermediates detected by single-molecule quasi-static mechanical unfolding of protein,
BIOPHYSICS,
THE BIOPHYSICAL SOCIETY OF JAPAN,
Vol. 5,
pp. 25-35,
2009.
国際会議発表 (査読有り)
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Tokunaga M.,
Fukagawa A.,
Sakata-Sogawa K..
Single molecule imaging in living cells and stochastic features of inter- and intra-molecular interactions.,
The 10th NIBB-EMBL Symposium 2013 “Quantitative Bioimaging”,
Mar. 2013.
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Tokunaga M.,
Fukagawa A.,
Sakata-Sogawa K.
Single molecule imaging in living cells and stochastic features of inter- and intra-molecular interactions,
1st Bioscience and Biotechnology International symposium “Biomolecular assemblies from nano to micro”,
Jan. 2013.
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Fukagawa A.,
Hiroshima M.,
Tokunaga M.
Stochastic and dynamic behavior of quasi-static mechanical unzipping of single-base pair of DNA on 2D maps,
17th international Bophysics Congress,
Oct. 2011.
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Fukagawa A.,
Hiroshima M.,
Tokunaga M.
Stochastic and dynamic pathways detected by quasi-static mechanical unzipping of single-base pair of DNA and MD simulations,
Gordon Research Conference Single Molecule Approaches To Biology,
July 2010.
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Tokunaga M.,
Fukagawa A.,
Sakata-Sogawa K..
Single molecule imaging by HILO microscopy in linving cells and stochastic emergence of multiple intermediates detected by single-molecule protein unfolding.,
Department of Anatomy & Structural Biology Seminar,
Aug. 2008.
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Fukagawa A.,
Hiroshima M.,
Sakane I.,
Kuwajima K.,
Tokunaga M..
Stochastic emergence of multiple intermediates detected by single-molecule protein unfolding.,
Gordon Research Conference Single Molecule Approaches To Biology,
Aug. 2008.
国内会議発表 (査読有り)
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Akihiro Fukagwa,
Michio Hiroshima,
Makio Tokunaga.
Entropic effects of hydrogen bonds to the double-stranded DNA structure revealed by single-molecule mechanical unzipping,
第53回日本生物物理学会年会,
Sept. 2015.
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Akihiro Fukagawa,
Kumiko Sakata-Sogawa,
Makio Tokunaga.
Formation of microclusters of receptor molecules improves signal/noise ratio in cellular signal transduction,
The 52th Annual Meeting of the Biophysical Society of Japan,
Sept. 2014.
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Akio Chiba,
Akihiro Fukagawa,
Kumiko Sakata-Sogawa,
Makio Tokunaga.
Responses of a stochastic signaling cascade to input signals with extrinsic noise,
The 51th Annual Meeting of the Biophysical Society of Japan,
Oct. 2013.
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Akihiro Fukagawa,
Masashi Kajita,
Kumiko Sakata-Sogawa,
Makio Tokunaga.
Why do cells use signaling cascades with a variety of the number of steps?,
The 51th Annual Meeting of the Biophysical Society of Japan,
Oct. 2013.
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徳永万喜洋,
深川暁宏,
十川久美子.
1分子研究が明かす動的でエントロピー的な“場”,
遺伝情報場シンポジウム2013,
Jan. 2013.
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深川暁宏,
廣島通夫,
桑島邦博,
徳永万喜洋.
スタフィロコッカルヌクレアーゼの分子内構造へのカルシウムイオン効果の1分子力学測定,
第46回日本生物物理学会年会,
Dec. 2008.
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深川暁宏,
廣島通夫,
桑島邦博,
徳永万喜洋.
一分子計測およびMDシミュレーションによるタンパク質アンフォールディングの確率的経路と複数の中間状態の検出,
第45回日本生物物理学会年会,
Dec. 2007.
国内会議発表 (査読なし・不明)
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Akihiro Fukagwa,
Michio Hiroshima,
Makio Tokunaga.
GC and AT pairs show different entropic stabilization of DNA structures found in single-molecule mechanical unzipping,
The 50th Annual Meeting of the Biophysical Society of Japan,
Sept. 2012.
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Akihiro Fukagawa,
Michio Hiroshima,
Makio Tokunaga.
Entropic stabilization of DNA structures by hydrogen bonds found in mechanical unzipping,
The 49th Annual Meeting of the Biophysical Society of Japan,
Sept. 2011.
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Akihiro Fukagawa,
Michio Hiroshima,
Makio Tokunaga.
Stochastic and dynamic behavior of quasi-static mechanical unzipping of single-base pair of DNA on 2D maps,
第48回日本生物物理学会年会,
Sept. 2010.
-
Akihiro Fukagawa,
Michio Hiroshima,
Makio Tokunaga.
Stochastic and dynamic pathways detected by quasi-static mechanical unzipping of single-base pair of DNA and MD simulations,
第47回日本生物物理学会年会,
Oct. 2009.
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深川暁宏,
廣島通夫,
桑島邦博,
徳永万喜洋.
スタフィロコッカルヌクレアーゼの分子内構造へのカルシウムイオン効果の1分子力学測定,
科研費特定領域研究「マルチスケール操作によるシステム細胞工学(バイオ操作)」公開シンポ「分野横断的手法を活用した新時代の生命科学研究」,
Aug. 2009.
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