Gromiha M. | Computational Biology Research Center Aist
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概要
関連著者
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Gromiha M.
Computational Biology Research Center, National Institute of Advanced Industrial Science and Technol
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Gromiha M.
Computational Biology Research Center Aist
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Song Jiangning
Bioinformatics Center, Institute for Chemical Research, Kyoto University
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Takemoto Kazuhiro
PRESTO, Japan Science and Technology Agency
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Shen Hongbin
Institute of Image Processing & Pattern Recognition, Shanghai Jiaotong University
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Tan Hao
Department of Biochemistry and Molecular Biology, Monash University
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Akutsu Tatsuya
Bioinformatics Center, Institute for Chemical Research, Kyoto University
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Gromiha M.
Computational Biology Research Center:aist
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Suwa Makiko
Computational Biology Research Center, AIST
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Imai Kenichiro
Computational Biology Research Center, AIST
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Horton Paul
Computational Biology Research Center, AIST
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Horton Paul
Computational Biology Research Center (cbrc) National Institute Of Advanced Industrial Science And T
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Horton Paul
Computational Biology Research Center Aist
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Imai Kenichiro
Computational Biology Research Center Aist
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Suwa Makiko
Computational Biology Research Center (cbrc) National Institute Of Advanced Industrial Science And T
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Suwa Makiko
Computational Biology Research Center Aist
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Akutsu Tatsuya
Bioinformatics Center Inst. For Chemical Res. Kyoto Univ.
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Gromiha M.
Computational Biology Research Center, AIST
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Gromiha M.
Computational Biology Research Center, National Institute of Advanced Industrial Science and Technology
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Shen Hongbin
Institute of Image Processing & Pattern Recognition, Shanghai Jiaotong University
著作論文
- Prediction of Protein Folding Rates from Structural Topology and Complex Network Properties
- S3c2-4 Structural Bioinformatics on β-barrel Membrane Proteins : Analysis, Discrimination and Prediction(S3-c2: "Structural Bioinformatics: Molecular structures as the basis of understanding protein network systems",Symposia,Abstract,Meeting Program of EA
- 2P-286 βシグナルの特徴解析とそれを用いた新規ミトコンドリアβバレル型外膜タンパク質の探索(生命情報科学・構造ゲノミクス,第46回日本生物物理学会年会)
- 19aTC-8 Biophysical approaches for understanding the folding and stability of proteins