SPICE中基于蛋白质的三维记忆建模

R. Brower, R. Ewing, A. J. Brower
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引用次数: 0

摘要

集成电路工程仿真程序(SPICE)已经成功地用于半导体电路设计多年。SPICE将电路表示为具有相互作用参数(电流,电压等)的基本设备网络,然后将这些相互作用建模为偏微分方程系统。生物系统大致相似,由相互作用的生化循环网络组成,其产生的化学浓度也可以用偏微分方程来建模。在目前的工作中,我们使用SPICE来模拟光学访问的、基于蛋白质的3-D存储器。在SPICE中对蛋白质的光化学效应进行建模,使我们能够在同一个模型中包括所需的支持电子和光学元件,以正确地循环存储器并将其与外部世界连接起来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling Protein-Based 3-D Memory in SPICE
The Simulation Program For Integrated Circuit Engineering (SPICE) has been used successfully for many years to aid semiconductor circuit design. SPICE represents circuits as networks of basic devices with interacting parameters (current, voltage, etc.), and then models these interactions as systems of partial differential equations. Biological systems are roughly similar, consisting of networks of interacting biochemical cycles whose resulting chemical concentrations can also be modeled by partial differential equations. In the present work, we use SPICE to model an optically-accessed, protein-based, 3-D memory. Modeling the protein's photochemical effects in SPICE allows us to include, within the same model, the supporting electronics and optics needed to properly cycle the memory and interface it to the outside world.
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