Bacteria Nano Communications Described by a Machine Learning Theory Based on the Feynman Path Integral

H. Nieto-Chaupis
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引用次数: 5

Abstract

Richard Feynman invented the so-called physics-mathematics theory: path integrals inside the framework of elementary particles interactions. This theory has had a wide spectrum of applications in various scientific fields. In this paper we study bacteria communications through the conjunction of the Mitchell’s criteria and the path integral theory. The factor aggressive of some families of bacteria might be associated to the fact that most of them under displacement are in an indirect manner using the criteria as (i) task, (ii) performance, and (iii) experience. The path integral is used to model space-time trajectories that would enable us to anticipate through advanced Internet technologies such as the Internet of Bio-Nano Things.
基于费曼路径积分的机器学习理论描述细菌纳米通信
理查德·费曼(Richard Feynman)发明了所谓的物理数学理论:基本粒子相互作用框架内的路径积分。这一理论在各个科学领域都有广泛的应用。本文通过米切尔准则和路径积分理论的结合来研究细菌的通讯。某些细菌家族的侵袭性因素可能与以下事实有关,即大多数细菌在置换下以间接方式使用标准作为(i)任务,(ii)性能和(iii)经验。路径积分用于模拟时空轨迹,使我们能够通过先进的互联网技术(如生物纳米物联网)进行预测。
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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