COVID-19:一个物理模型

K. W. Wong, P. Fung, W. Chow
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引用次数: 5

摘要

冠状病毒的结构被解释为蛋白质庞加莱球的分形表示,点缀着具有SU(3)李群的几何实现的t-spike,并包含SU(2)拓扑表示的RNA,而在核心内包含病毒DNA。通过该模型,病毒必须具有由EEM机制诱导的临界温度Tc才能完成庞加莱球表面。因此,在Tc以上,它将分解。然后,我们讨论了病毒如何在患者体内传播,并解释了目前使用的与该模型一致的非常快速的最新检测方法,以及基于人体免疫系统相同原理的相应可能的治疗方法。希望这个模型也可以作为寻找可能的药物的指南,到目前为止还缺乏。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
COVID-19: A Physical Model
The coronavirus structure is explained as a fractal representation of the Poincare sphere of proteins, dotted with t-spikes having the geometric realization of the SU(3) Lie group for the protein spike, and encompasses an RNA of SU(2) topologies representations, while within the core contains a virus DNA. Through this suggested model, the virus must possess a critical temperature Tc, induced by the EEM mechanism for the completion of the Poincare sphere surface. Thus above Tc it will disintegrate. We then discuss how the virus transmission progresses within the patient’s body, and explain a very fast recent detection method currently used consistent with this model, as well as a corresponding possible cure based on this same principle of the body’s immune system. Hopefully the model can be also used as a guide to finding possible medications, so far is lacking.
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来源期刊
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