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Memristors as Artificial Biochemical Reactions in Cytomorphic Systems

机译:忆内体作为细胞骨髓系统中的人工生化反应

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A memristor is a nano-scale two-terminal stochastic electronic device. This paper proposes functional analogies between biochemical reactions and memristive devices. It shows that memristors can mimic biochemical reactions and gene networks efficiently and capture both deterministic and stochastic dynamics at the nano-scale level. We present different abstraction models and voltage-controlled resistive switching circuits that inherently model the activity of genetic circuits with low signal-to-noise ratio (SNR). These findings constitute a milestone for cell-inspired circuit design with noise-tolerance and energy-efficiency features, which can provide a fast and simple emulative framework for studying arbitrary large-scale biological networks in systems and synthetic biology.
机译:忆阻器是纳米级两端随机电子设备。本文提出了生物化学反应与椎间膜器件之间的功能类别。结果表明,忆阻器可以有效地模拟生化反应和基因网络,并在纳米级水平下捕获确定性和随机动力学。我们呈现不同的抽象模型和电压控制电阻切换电路,该电阻固有地模拟了低信噪比(SNR)的遗传电路的活动。这些调查结果构成了具有抗噪声公差和能效特征的细胞启发电路设计的里程碑,这可以为在系统和合成生物学中研究任意大规模生物网络的快速和简单的仿真框架。

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