Collective Rotational Motion of Bio-nanomachines via Chemical and Physical Interactions

Collective Rotational Motion of Bio-nanomachines via Chemical and Physical Interactions
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通过化学和物理相互作用的生物纳米机器的集体旋转运动

DOI:
10.1109/globecom48099.2022.10001199
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发表时间:
2022
期刊:
GLOBECOM 2022 - 2022 IEEE Global Communications Conference
影响因子:
--
通讯作者:
T. Nakano
T. Nakano
中科院分区:
--
文献类型:
--
作者:
Jiewen Wang;T. Nakano

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从一组生物纳米机器中创建大规模的功能结构是分子通信工程应用的关键。本文旨在从一组生物纳米机器中创建一个大规模的功能结构,并提出了一种生物纳米机器的集体旋转运动模型。在所提出的模型中,一组生物纳米机器形成了一个继续旋转的集群。所提出的模型是基于这样的想法,即旋转的对象是稳定的扰动。在开发模型时,我们从生物模式形成中获得灵感:生物实体通过化学和物理相互作用形成功能结构。因此,我们开发了一个集体旋转运动模型的基础上,生物纳米机器之间的化学和物理相互作用。通过建模和仿真,我们深入了解生物纳米机器旋转集群的设计和工程。本文展示了物理相互作用在创建一个系统级的功能,从一组生物纳米机器的重要性,在分子通信研究中产生了新的挑战和机遇。
Creating a large-scale functional structure from a group of bio-nanomachines is key for engineering applications of molecular communication. This paper aims to create a large-scale functional structure from a group of bio-nanomachines, and proposes a collective rotational motion model of bio-nanomachines. In the proposed model, a group of bio-nanomachines forms a cluster that continues to rotate. The proposed model is based on the idea that spinning objects are stable against perturbations. In developing the model, we draw inspiration from biological pattern formation: biological entities interact chemically and physically to form a functional structure. Accordingly, we develop a collective rotational motion model based on chemical and physical interactions between bio-nanomachines. Through modeling and simulations, we gain insight into design and engineering of rotating clusters of bio-nanomachines. This paper demonstrates the importance of physical interactions in creating a system-level functionality from a group of bio-nanomachines, giving rise to new challenges and opportunities in molecular communication research.
DOI: 10.1016/j.jtbi.2016.11.013
发表时间: 2017-02-07
影响因子: 2
作者:
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通讯作者: Byrne, Helen M.
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