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Titlebook: DNA Computing and Molecular Programming; 25th International C Chris Thachuk,Yan Liu Conference proceedings 2019 Springer Nature Switzerland

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楼主: SPARK
发表于 2025-3-25 04:12:09 | 显示全部楼层
Conference proceedings 2019niques; molecular motors and molecular robotics; information storage; studies of fault-tolerance and error correction; software tools for analysis, simulation, anddesign; synthetic biology and in vitro evolution; and applications in engineering, physics, chemistry, biology, and medicine..
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Arbeitslosigkeit in Westdeutschlandotocol that approximates arbitrary unimolecular and bimolecular reactions using polymerase strand displacement reactions. Then we use these fundamental reaction systems as modules to show three large-scale applications of our architecture, including an autocatalytic amplifier, a molecular-scale consensus protocol, and a dynamic oscillatory system.
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Investitionen in das Humankapital a subfield of . which solves a previously open problem. We also prove that a CRN with integer initial concentrations can be simulated by a CRN with all zero initial concentrations. Using these results, we give simple and natural constructions showing . and . are members of ., which was not previously known.
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Investitionen in das Humankapitalwork separately converge exponentially fast. We simulate mass-action kinetics for our network on an example sequence, and show that it learns the same parameters for the HMM as the Baum-Welch algorithm.
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Implementing Arbitrary CRNs Using Strand Displacing Polymerase,otocol that approximates arbitrary unimolecular and bimolecular reactions using polymerase strand displacement reactions. Then we use these fundamental reaction systems as modules to show three large-scale applications of our architecture, including an autocatalytic amplifier, a molecular-scale consensus protocol, and a dynamic oscillatory system.
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Error-Free Stable Computation with Polymer-Supplemented Chemical Reaction Networks,ions. We further refine the polymer-supplemented CRN model to allow for anonymous polymers, that is, multiple functionally-identical copies of a polymer, and provide an illustrative example of how bottleneck reactions can be avoided in this new model.
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