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COVID-19 和呼吸节律发生器最小闭环模型中的隐匿性低氧血症。

COVID-19 and silent hypoxemia in a minimal closed-loop model of the respiratory rhythm generator.

机构信息

Department of Mathematical Sciences, New Jersey Institute of Technology, University Heights, Newark, NJ, 07102, USA.

Department of Mathematics, Applied Mathematics and Statistics, Case Western Reserve University, 10900 Euclid Avenue, Cleveland, OH, 44106, USA.

出版信息

Biol Cybern. 2024 Aug;118(3-4):145-163. doi: 10.1007/s00422-024-00989-w. Epub 2024 Jun 17.

Abstract

Silent hypoxemia, or "happy hypoxia," is a puzzling phenomenon in which patients who have contracted COVID-19 exhibit very low oxygen saturation ( < 80%) but do not experience discomfort in breathing. The mechanism by which this blunted response to hypoxia occurs is unknown. We have previously shown that a computational model of the respiratory neural network (Diekman et al. in J Neurophysiol 118(4):2194-2215, 2017) can be used to test hypotheses focused on changes in chemosensory inputs to the central pattern generator (CPG). We hypothesize that altered chemosensory function at the level of the carotid bodies and/or the nucleus tractus solitarii are responsible for the blunted response to hypoxia. Here, we use our model to explore this hypothesis by altering the properties of the gain function representing oxygen sensing inputs to the CPG. We then vary other parameters in the model and show that oxygen carrying capacity is the most salient factor for producing silent hypoxemia. We call for clinicians to measure hematocrit as a clinical index of altered physiology in response to COVID-19 infection.

摘要

沉默性低氧血症,或“快乐低氧血症”,是一种令人费解的现象,即感染 COVID-19 的患者血氧饱和度非常低(<80%),但呼吸时没有不适。这种对低氧反应迟钝的发生机制尚不清楚。我们之前已经表明,呼吸神经网络的计算模型(Diekman 等人,在 J Neurophysiol 118(4):2194-2215, 2017)可用于测试专注于化学感觉输入到中枢模式发生器(CPG)变化的假说。我们假设颈动脉体和/或孤束核水平的化学感觉功能改变是对低氧反应迟钝的原因。在这里,我们通过改变代表 CPG 中氧感觉输入的增益函数的特性来使用我们的模型来探索这一假设。然后,我们改变模型中的其他参数,并表明携氧能力是产生沉默性低氧血症的最显著因素。我们呼吁临床医生测量红细胞压积作为 COVID-19 感染时对改变的生理学反应的临床指标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/482e/11289179/b94f84167700/422_2024_989_Fig1_HTML.jpg

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