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Titlebook: DNA Computing and Molecular Programming; 20th International C Satoshi Murata,Satoshi Kobayashi Conference proceedings 2014 Springer Interna

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Simone Inversini,Eberhard Ulich,Marc Wülserrogrammable curvature. Finally, we take inspiration from space-filling curves in mathematics to design strand paths that have high-locality, programmed folding kinetics to avoid topological traps, and structural repeat units that might be used to create infinite RNA ribbons and squares by rolling ci
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Marianne Resch,Claudia Fenzl MBA. This raises the question of whether similar results can be achieved in a more restrictive, and perhaps easier to justify, model where uncontrolled random movements, or agitations, are happening throughout the self-assembly process and are the only form of rigid-body movement. We show that this is
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https://doi.org/10.1007/978-3-8349-9551-3automaton’s specified rules. To show that the reaction-diffusion program we describe produces the target dynamics, we simulate the reaction-diffusion network for two simple 1-dimensional cellular automata using coupled partial differential equations. Reaction-diffusion based cellular automata could
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