呼吸调节与呼吸机制相结合:在Cheyne-Stokes呼吸中的应用

Tanmay Pal, S. Maka
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引用次数: 1

摘要

根据假设和假设,呼吸系统的数学建模方法是在不同的抽象=子系统级别上完成的。微分方程用于描述这类系统的动力学。在文献中,各种类型的模型是可用的。例如,一些模型描述气体的调节,另一方面,一些模型将口压力和空气流量联系起来。考虑到机体的其他子系统处于稳定状态,这些模型中的每一个都是特定子系统的完整模型。然而,当与一个子系统相关的问题在其他子系统中表现出来时,存在一定的偏差。Cheyne-Stokes呼吸就是其中一种,它可能是由充血性心力衰竭或阻塞性睡眠呼吸暂停或中枢性睡眠呼吸暂停引起的,它反映在潮汐量的起伏上,可能伴有呼吸暂停和呼吸不足。这些类型的呼吸模式是由调节系统或心血管系统或神经系统的故障引起的。在这项工作中,结合了调节系统、呼吸机制和神经系统的模型。利用调制假设,组合模型能够产生切恩-斯托克斯呼吸波形。引入一个类似于调节指数的新参数来实现不同程度的呼吸暂停和低呼吸,可以量化病情。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combining respiratory regulation with breathing mechanism: Application to Cheyne-Stokes Respiration
Mathematical modeling approaches for the respiratory system are done on different abstraction=subsystem levels, depending upon the hypothesis and assumptions. Differential equations are used to describe dynamics of such systems. In the literature, various types of models are available. For example, some models describe the regulation of gases, on the other hand, some models link mouth pressure and air flow. Each of these models are complete for that particular subsystem, considering other subsystems of the body are at steady state. However, there are certain deviations, when a problem related to one subsystem is manifested in other subsystems. Cheyne-Stokes Respiration is one of such condition, which might generate from congestive heart failure or obstructive sleep apnea or central sleep apnea and it is reflected in waxing and waning of the tidal volume, possibly with the presence of apnea and hypopnea. These types of breathing patterns are caused by malfunction of the regulation system or cardiovascular system or neural system. In this work, combining models of the regulation system, breathing mechanism and neural system are considered. Using modulation hypothesis, the combined model is capable of generating Cheyne-Stokes Respiration waveforms. A new parameter, similar to modulation index is introduced to achieve different levels of apnea and hypopnea, which can quantify the diseased condition.
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