一种受生物启发的纳米马达运动学计算语言

H. Khataee, M. Y. Ibrahim
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引用次数: 1

摘要

运动蛋白纳米马达是一种在细胞内运输分子货物的微小载体。许多纳米马达可以附着在单一的货物上,并协调它们的行为来运输货物。运动蛋白纳米马达的这种行为协调可以通过一种交流语言来定义,运动蛋白纳米马达遵循这种交流语言来运输货物。本文从纳米马达的自然行为出发,提出了一种用于纳米马达运动的计算语言。在该技术中,我们使用了动力学纳米马达的行为确定性有限自动机(DFA)模型,该模型反映了纳米马达响应其细胞的内部智能和自主决策过程。此外,将kinesin纳米马达对其细胞的行为反应,即纳米马达的行为DFA模型,映射为纳米马达的计算规则语言。所提出的运动学纳米马达的计算语言既能被行为DFA模型所接受,又与纳米马达的自然行为很好地吻合。这种计算语言在自然界中智能和自主纳米粒子之间的发展,为构建潜在的仿生纳米机器人系统以及设计一些用于控制它们的计算语言铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A bio-inspired computational language for kinesin nanomotor
Kinesin nanomotor is a tiny vehicle that transports molecular cargoes within the cells. Many kinesin nanomotors can attach to a single cargo and coordinate their behaviors to transport the cargo. This behavioral coordination of kinesin nanomotors can be defined through a communicational language that kinesin nanomotors follow to transport the cargo. This paper proposes a computational language for kinesin nanomotor which is inspired by the nanomotor's natural behavior. In this technique, we have used behavioral Deterministic Finite Automaton (DFA) model of kinesin nanomotor which indicated internal intelligent and autonomous decision-making process of the nanomotor in response to its cell. In addition, the behavioral responses of kinesin nanomotor to its cell, behavioral DFA model of the nanomotor, were mapped to a computational regular language for the nanomotor. The proposed computational language for kinesin nanomotor was acceptable by the behavioral DFA model and also in good agreement with the natural behavior of the nanomotor. The development of such computational languages among intelligent and autonomous nanoparticles in nature paves the way for constructing potential bio-inspired nanorobotic systems as well as designing of some computational languages for their controlling.
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