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Biologically Inspired Bio-Cyber Interface Architecture and Model for Internet of Bio-NanoThings Applications

机译:受生物启发的生物网络接口体系结构和Internet-NanoThings应用模型

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With the advent of nanotechnology, concepts related to the Internet of Things, such as the Internet of NanoThings and Internet of Bio-NanoThings (IoBNT) have also emerged in the classical literature. The main concern of this paper is the IoBNT, which projects the prospective application domain where the activities of very tiny, biocompatible, and non-intrusive devices operating in an in-body nanonetwork can be monitored and controlled through the Internet. In this paper, we present an illustrative scenario and system model of an IoBNT for application in an advanced healthcare delivery system. To address one of the major challenges of the IoBNT, we present an exemplary architecture and model of a bio-cyber interface for connecting the conventional electromagnetic-based Internet to the biochemical signaling-based bionanonetwork. The bio-cyber interface is designed and modeled by employing biological concepts, such as the responsiveness of certain biomolecules to thermal and light stimuli, and the bioluminescence phenomenon of some biochemical reactions. The analysis in this paper focuses on the system that comprises the bio-cyber interface and the information propagation network of the blood vessel that leads to the in-body nanonetwork location. The effects of the system and design parameters associated with the IoBNT models presented are numerically evaluated.
机译:随着纳米技术的出现,与物联网有关的概念,例如纳米物联网和生物纳米物联网(IoBNT)也出现在古典文献中。本文的主要关注点是IoBNT,它设计了一个预期的应用领域,在该领域中,可以通过Internet监视和控制在体内纳米网络中运行的非常微小的,具有生物相容性且非侵入性的设备的活动。在本文中,我们提出了一个IoBNT的说明性方案和系统模型,可用于高级医疗保健交付系统。为了解决IoBNT的主要挑战之一,我们提出了一种生物网络接口的示例性体系结构和模型,用于将常规的基于电磁的Internet连接到基于生物化学信号的仿生网络。通过使用生物概念设计和建模生物网络界面,例如某些生物分子对热和光刺激的响应性以及某些生化反应的生物发光现象。本文的分析重点在于包含生物网络接口和血管信息传播网络的系统,该系统通向体内纳米网络。数值评估了与提出的IoBNT模型相关的系统和设计参数的影响。

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