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Five Inputs Code Lock Circuit Design Based on DNA Strand Displacement Mechanism

机译:五种输入码锁电路设计基于DNA链位移机构

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摘要

In recent years, the development of biological computers is becoming faster and faster, in order to make the logical operation algorithms of biological computers more mature and stable, a new idea for the code lock logic circuit is proposed based on DNA strand displacement by using the dual-rail method. The code lock is designed by four input signals and one conversion input signal. Only when the four input codes are correct and the conversion signal code is turned on, the password lock will be in open state, otherwise the password lock will produce an alarm signal, stopping outside invasion timely. The information of key is processed to obtain the correct password; finally, the experimental simulation results are obtained by Visual DSD software. The results analysis show that the designed code lock circuit is effective, which may provide a good technical support and a good theoretical basis in biological computers development.
机译:近年来,生物计算机的发展正在变得更快,更快,为了使生物计算机的逻辑运行算法更加成熟和稳定,基于DNA链位移来提出代码锁定逻辑电路的新思路,通过使用 双轨法。 代码锁定由四个输入信号和一个转换输入信号设计。 只有当四个输入代码正确并且转换信号代码打开时,密码锁将处于打开状态,否则密码锁将产生警报信号,及时停止外部侵入。 处理密钥的信息以获取正确的密码; 最后,实验模拟结果是通过Visual DSD软件获得的。 结果分析表明,设计的码锁电路有效,这可能提供良好的技术支持和生物计算机发展的良好理论基础。

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