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基于 DNA 链置换的 8 位加法器和减法器与域标签

8-Bit Adder and Subtractor with Domain Label Based on DNA Strand Displacement.

机构信息

College of Mathematics and Computer Science, Zhejiang Normal University, Jinhua 321004, China.

College of Nuclear Science and Engineering, Sanmen Institute of technicians, Sanmen 317100, China.

出版信息

Molecules. 2018 Nov 15;23(11):2989. doi: 10.3390/molecules23112989.

Abstract

DNA strand displacement, which plays a fundamental role in DNA computing, has been widely applied to many biological computing problems, including biological logic circuits. However, there are many biological cascade logic circuits with domain labels based on DNA strand displacement that have not yet been designed. Thus, in this paper, cascade 8-bit adder/subtractor with a domain label is designed based on DNA strand displacement; domain t and domain f represent signal 1 and signal 0, respectively, instead of domain t and domain f are applied to representing signal 1 and signal 0 respectively instead of high concentration and low concentration high concentration and low concentration. Basic logic gates, an amplification gate, a fan-out gate and a reporter gate are correspondingly reconstructed as domain label gates. The simulation results of Visual DSD show the feasibility and accuracy of the logic calculation model of the adder/subtractor designed in this paper. It is a useful exploration that may expand the application of the molecular logic circuit.

摘要

DNA 链置换在 DNA 计算中起着至关重要的作用,已广泛应用于许多生物计算问题,包括生物逻辑电路。然而,仍有许多基于 DNA 链置换的带域标签的生物级联逻辑电路尚未设计。因此,本文基于 DNA 链置换设计了具有域标签的级联 8 位加法器/减法器;域 t 和域 f 分别代表信号 1 和信号 0,而不是域 t 和域 f 分别用于表示高浓度和低浓度,高浓度和低浓度。相应地,基本逻辑门、放大门、扇出门和报告器门被重建为域标签门。Visual DSD 的仿真结果表明了本文设计的加法器/减法器逻辑计算模型的可行性和准确性。这是对分子逻辑电路应用的有益探索。

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