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Enzyme transistor circuits for reaction-diffusion computing

机译:用于反应扩散计算的酶晶体管电路

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This paper explores the possibility of constructing massively parallel computing systems using molecular electronics technology. By employing specificity of biological molecules, such as enzymes, new integrated circuit architectures which are essentially free from interconnection problems could be constructed. To clarify the proposed concept, this paper presents a functional model of a basic biomolecular switching device called an enzyme transistor. The enzyme transistor is, in a sense, an artificial catalyst which selects a specific substrate molecule and transforms it into a specific product. Using this primitive function, various wire-free computing circuits can be realized. Examples described in this paper include basic analog amplifiers and digital logic circuits. This paper also presents the design of an excitable enzyme transistor circuit and demonstrates the potential of enzyme transistors for creating reaction-diffusion dynamics that performs useful computations in a massively parallel fashion
机译:本文探讨了使用分子电子技术构建大规模并行计算系统的可能性。通过利用诸如酶的生物分子的特异性,可以构建基本上没有互连问题的新集成电路体系结构。为了阐明提出的概念,本文介绍了一种称为酶晶体管的基本生物分子开关器件的功能模型。从某种意义上说,酶晶体管是一种人造催化剂,可以选择特定的底物分子并将其转化为特定的产物。使用该原始功能,可以实现各种无线计算电路。本文介绍的示例包括基本的模拟放大器和数字逻辑电路。本文还介绍了可激励酶晶体管电路的设计,并演示了酶晶体管产生反应扩散动力学的潜力,该动力学以大规模并行方式执行有用的计算

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