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Kinetic model of development of acute viral infection in the human body. Critical conditions, control mechanisms, 'thermoheliox'

机译:人体急性病毒感染发展动力学模型。 临界条件,控制机制,“Thermoheliox”

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A kinetic model of the development of acute viral infection is proposed and the dynamic behavior of key variables, including the concentrations of viral particles, infected cells, and pathogenic microorganisms, is described. The change in the hydrogen ion concentration in the lungs and pH dependence of the activity of carbonic anhydrase, a key respiration enzyme, are critical factors. An acute bifurcation transition determining either the life or collapse of the system is demonstrated. The transition is associated with exponential increase in the concentrations of participants in the process and with functioning of the key enzyme, carbonic anhydrase. A physicochemical interpretation is given for the therapeutic effect of temperature rise and potential therapeutic effect of "thermoheliox", that is, breathing by heated helium-oxygen mixture.
机译:提出了急性病毒感染的发展动力学模型,并描述了关键变量的动态行为,包括病毒颗粒,感染细胞和病原微生物的浓度。 肺部氢离子浓度的变化和碳酸酐酶活性,关键呼吸酶的活性是关键因素。 证明了确定系统的寿命或崩溃的急性分叉转变。 转变与过程中参与者浓度的指数增加相关,并且具有关键酶,碳酸酐酶的功能。 给出了物理化学解释,用于升温和“ThermoheLiOx”的潜在治疗效果的治疗效果,即加热氦 - 氧混合物呼吸。

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