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Ken Komiya
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2020 – today
- 2024
- [j8]Ken Komiya, Chizuru Noda, Masayuki Yamamura:
Characterization of Cascaded DNA Generation Reaction for Amplifying DNA Signal. New Gener. Comput. 42(2): 237-252 (2024) - 2022
- [j7]Ryutaro Yako, Daihei Ise, Ken Komiya, Kenzo Fujimoto, Satoshi Kobayashi:
Monotone Control of R Systems. New Gener. Comput. 40(2): 623-657 (2022) - 2021
- [j6]Nobuya Kimoto, Shigetaka Nakamura, Ken Komiya, Kenzo Fujimoto, Satoshi Kobayashi:
Reducing control alphabet size for the control of right linear grammars with unknown behaviors. Theor. Comput. Sci. 862: 193-213 (2021)
2010 – 2019
- 2019
- [j5]Nobuya Kimoto, Ken Komiya, Kenzo Fujimoto, Satoshi Kobayashi:
Monotonically controlling right linear grammars with unknown behaviors to output a target string. Theor. Comput. Sci. 777: 387-408 (2019) - 2016
- [c10]John A. Rose, Ken Komiya:
Analysis and design of a single-molecule DNA nanodevice for thermal band-pass filters. NEMS 2016: 79-84 - 2015
- [j4]Ken Komiya, Masayuki Yamamura:
Cascading DNA Generation Reaction for Controlling DNA Nanomachines at a Physiological Temperature. New Gener. Comput. 33(3): 213-229 (2015) - 2012
- [p1]Masami Hagiya, Satoshi Kobayashi, Ken Komiya, Fumiaki Tanaka, Takashi Yokomori:
Molecular Computing Machineries - Computing Models and Wet Implementations. Handbook of Natural Computing 2012: 1129-1184 - 2010
- [j3]Ken Komiya, Masayuki Yamamura, John A. Rose:
Experimental validation and optimization of signal dependent operation in whiplash PCR. Nat. Comput. 9(1): 207-218 (2010)
2000 – 2009
- 2008
- [j2]Hiroyuki Sekiguchi, Ken Komiya, Daisuke Kiga, Masayuki Yamamura:
A design and feasibility study of reactions comprising DNA molecular machine that walks autonomously by using a restriction enzyme. Nat. Comput. 7(3): 303-315 (2008) - [c9]Ken Komiya, Masayuki Yamamura, John A. Rose:
Experimental Validation of Signal Dependent Operation in Whiplash PCR. DNA 2008: 1-10 - 2007
- [c8]Masayuki Yamamura, Noriko Hirayama, Ken Komiya:
An implementation of Aqueous memory molecules with light responsive DNAs. IEEE Congress on Evolutionary Computation 2007: 1843-1848 - [c7]Hiroyuki Sekiguchi, Ken Komiya, Daisuke Kiga, Masayuki Yamamura:
A Realization of DNA Molecular Machine That Walks Autonomously by Using a Restriction Enzyme. DNA 2007: 54-65 - [c6]Ken Komiya, Noriko Hirayama, Masayuki Yamamura:
An Interface for a Computing Model Using Methylation to Allow Precise Population Control by Quantitative Monitoring. DNA 2007: 191-200 - 2006
- [c5]John A. Rose, Ken Komiya, Satsuki Yaegashi, Masami Hagiya:
Displacement Whiplash PCR: Optimized Architecture and Experimental Validation. DNA 2006: 393-403 - [c4]Ken Komiya, Satsuki Yaegashi, Masami Hagiya, Akira Suyama, John A. Rose:
Experimental Validation of the Statistical Thermodynamic Model for Prediction of the Behavior of Autonomous Molecular Computers Based on DNA Hairpin Formation. DNA 2006: 428-438 - 2003
- [c3]Mitsuhiro Kubota, Kazumasa Ohtake, Ken Komiya, Kensaku Sakamoto, Masami Hagiya:
Branching DNA machines based on transitions of hairpin structures. IEEE Congress on Evolutionary Computation 2003: 2542-2548 - 2002
- [j1]Masami Hagiya, John A. Rose, Ken Komiya, Kensaku Sakamoto:
Complexity analysis of the SAT engine: DNA algorithms as probabilistic algorithms. Theor. Comput. Sci. 287(1): 59-71 (2002) - 2000
- [c2]Ken Komiya, Kensaku Sakamoto, Hidetaka Gouzu, Shigeyuki Yokoyama, Masanori Arita, Akio Nishikawa, Masami Hagiya:
Successive State Transitions with I/O Interface by Molecules. DNA Computing 2000: 17-26 - [c1]Masanori Arita, Akio Nishikawa, Masami Hagiya, Ken Komiya, Hidetaka Gouzu, Kensaku Sakamoto:
Improving Sequence Design for DNA Computing. GECCO 2000: 875-882
Coauthor Index
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