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Functional Analysis of Large-Scale DNA Strand Displacement Circuits

机译:大型DNA链置换电路的功能分析

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We present a method for the analysis of functional properties of large-scale DNA strand displacement (DSD) circuits based on Satisfiability Modulo Theories that enables us to prove the functional correctness of DNA circuit designs for arbitrary inputs, and provides significantly improved scalability and expressivity over existing methods. We implement this method as an extension to the Visual DSD tool, and use it to formalize the behavior of a 4-bit square root circuit, together with the components used for its construction. We show that our method successfully verifies that certain designs function as required and identifies erroneous computations in others, even when millions of copies of a circuit are interacting with each other in parallel. Our method is also applicable in the verification of properties for more general chemical reaction networks.
机译:我们提出了一种基于可满足性模理论的大规模DNA链置换(DSD)电路功能特性的分析方法,该方法使我们能够证明任意输入的DNA电路设计的功能正确性,并提供了显着提高的可扩展性和可表达性。现有方法。我们将这种方法实现为Visual DSD工具的扩展,并使用它来规范4位平方根电路的行为以及用于其构造的组件。我们表明,即使当电路的数百万个副本相互并行交互时,我们的方法也能成功验证某些设计是否按要求运行并识别其他设计中的错误计算。我们的方法也适用于更一般的化学反应网络的性质验证。

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