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Towards Temporal Logic Computation Using DNA Strand Displacement Reactions

机译:利用DNA链置换反应进行时态逻辑计算

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Time-varying signals are ubiquitous throughout science, and studying the high-level temporal structure of such processes is of significant practical importance. In this context, techniques from computer science such as temporal logic are a powerful tool. Temporal logic allows one to describe temporal properties of time-varying processes, e.g., the order in which particular events occur. In this paper, we show that DNA strand displacement reaction networks can be used to implement computations that check certain temporal relationships within time-varying input signals. A key aspect of this work is the development of DNA circuits that incorporate a primitive memory, so that their behavior is influenced not just by the current observed chemical environment, but also by environments observed in the past. We formalize our circuit designs in the DSD programming language and use simulation results to confirm that they function as intended. This work opens up the possibility of developing DNA circuits capable of long-term monitoring of processes such as cellular function, and points to possible designs of future DNA circuits that can decide more sophisticated temporal logics.
机译:时变信号在整个科学中无处不在,因此研究此类过程的高级时态结构具有重大的现实意义。在这种情况下,计算机科学技术(例如时间逻辑)是一种强大的工具。时间逻辑允许描述随时间变化的过程的时间属性,例如特定事件发生的顺序。在本文中,我们证明了DNA链置换反应网络可用于实现检查时变输入信号中某些时间关系的计算。这项工作的一个关键方面是开发结合了原始记忆的DNA电路,因此它们的行为不仅受到当前观察到的化学环境的影响,而且还受到过去观察到的环境的影响。我们使用DSD编程语言对电路设计进行形式化,并使用仿真结果来确认它们可以正常工作。这项工作为开发能够长期监控细胞功能等过程的DNA电路打开了可能性,并指出了未来DNA电路的可能设计,可以决定更复杂的时间逻辑。

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