Bit Error Rate of Bacteria Communications Through Electrodynamics-Based of Ions Interaction in Processes of Phosphotransferase Systems

H. Nieto-Chaupis
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引用次数: 2

Abstract

From the assumption that bacteria nanonetworks are achieving actions of communication through electric potentials and fields, in this paper those processes of (Nitrogen and sugar) phosphotransferase systems (PTS) that would led to bacteria communications, are modeled by classical electrodynamics. Under we propose that bacteria communications are using the free ions of Potassium to exert electric fields to others bacteria to accomplish a determined task such as chemotaxis. Thus the concentration of Potassium ions are the cause to define nanonetworks previous to achieve tasks to improve the wellness of a bacteria population. How these species behave are of importance to prepare and anticipate well-design strategies inside of the territory of the Internet of Bio-Nano Things (IoBNT).
基于电动力学的细菌在磷酸转移酶系统中通信的误码率
假设细菌纳米网络通过电势和电场实现通信行为,本文通过经典电动力学对(氮和糖)磷酸转移酶系统(PTS)导致细菌通信的过程进行了建模。我们认为细菌之间的交流是利用钾的自由离子向其他细菌施加电场来完成既定的任务,如趋化性。因此,钾离子的浓度是确定纳米网络之前实现改善细菌种群健康的任务的原因。这些物种的行为对于在生物纳米物联网(IoBNT)领域内准备和预测精心设计的策略非常重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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