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Conformational Addressing Using the Hairpin Structure of Single-Strand DNA.

, , , , , and . DNA, volume 2943 of Lecture Notes in Computer Science, page 219-223. Springer, (2003)

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Development of an In Vivo Computer Based on Escherichia coli., , and . DNA, volume 3892 of Lecture Notes in Computer Science, page 203-212. Springer, (2005)An integrated computational pipeline for designing high-affinity nanobodies with expanded genetic codes., , , , , , , , , and 2 other author(s). Briefings Bioinform., (2021)Complexity analysis of the SAT engine: DNA algorithms as probabilistic algorithms., , , and . Theor. Comput. Sci., 287 (1): 59-71 (2002)Conformational Addressing Using the Hairpin Structure of Single-Strand DNA., , , , , and . DNA, volume 2943 of Lecture Notes in Computer Science, page 219-223. Springer, (2003)Toward "Wet" Implementation of Genetic Algorithm for Protein Engineering., , and . DNA, volume 3384 of Lecture Notes in Computer Science, page 308-318. Springer, (2004)Hairpin-based state machine and conformational addressing: Design and experiment., , , , , and . Nat. Comput., 4 (2): 103-126 (2005)Towards parallel evaluation and learning of Boolean μ-formulas with molecules., , , , and . DNA Based Computers, volume 48 of DIMACS Series in Discrete Mathematics and Theoretical Computer Science, page 57-72. DIMACS/AMS, (1997)Improving Sequence Design for DNA Computing., , , , , and . GECCO, page 875-882. Morgan Kaufmann, (2000)Biologically-implemented genetic algorithm for protein engineering., , and . GECCO, page 233-240. ACM, (2009)Successive State Transitions with I/O Interface by Molecules., , , , , , and . DNA Computing, volume 2054 of Lecture Notes in Computer Science, page 17-26. Springer, (2000)