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稳定流与个体化顺应性节段之间的相互作用:在上呼吸道中的应用。

Interaction between steady flow and individualised compliant segments: application to upper airways.

作者信息

Fodil R, Ribreau C, Louis B, Lofaso F, Isabey D

机构信息

Unité de Physiologie Respiratoire, INSERM U296, Faculté de Médecine, Créteil, France.

出版信息

Med Biol Eng Comput. 1997 Nov;35(6):638-48. doi: 10.1007/BF02510972.

Abstract

To describe upper airway obstruction in patients with sleep apnea syndrome, the steady state solutions of a simple model of local pharyngeal obstruction were studied. Importantly, the present model embodies a series of two individualised elements, each having its own compliance, which enables the consideration, from a conceptual point of view, of local differences in anatomical and physiological properties between pharyngeal regions. The evolution of inspiratory flow and area variations were predicted using the transmural pressure at the downstream element as the controlled variable. Derivation and normalisation of fundamental governing equations, written for non-viscous and viscous fluids, reveal very different kinds of behaviour, depending on values of the speed index defined from the local distensibility, or its modulation by a friction factor for viscous fluid. The two-element model is able to describe a considerably rich mechanical behaviour, including the occurrence of critical conditions when area becomes very high or small, i.e. when the distensibility-dependent speed index at the upstream element tends toward unity. In spite of its simplicity, not only does the present model describe steady state behaviours that resemble the well-known phenomenon of choking in an elastic tube, but the viscous fluid conditions also reveal (i) an area evolution following a typical doubly folded shape, (ii) the occurrence of a close succession maximum and minimum flows which can be seen as a physiological 'flow plateau'. It is concluded that the concept of interaction behind the two-element model must be considered as soon as flow interacts in a compliant structure characterised by anatomical and/or functional singularities.

摘要

为描述睡眠呼吸暂停综合征患者的上气道阻塞情况,研究了一个局部咽部阻塞简单模型的稳态解。重要的是,当前模型包含一系列两个个体化元素,每个元素都有其自身的顺应性,这使得从概念角度能够考虑咽部区域之间解剖和生理特性的局部差异。以下游元素处的跨壁压力作为控制变量,预测吸气流量和面积变化的演变。针对非粘性和粘性流体编写的基本控制方程的推导和归一化显示,根据由局部扩张性定义的速度指数值,或粘性流体的摩擦因子对其的调制,会呈现出非常不同的行为类型。二元模型能够描述相当丰富的力学行为,包括当面积变得非常大或非常小时临界条件的出现,即当上游元素处与扩张性相关的速度指数趋于1时。尽管该模型很简单,但它不仅描述了类似于弹性管中众所周知的窒息现象的稳态行为,而且粘性流体条件还揭示了:(i)面积演变呈典型的双折形状;(ii)出现紧密相继的最大和最小流量,可将其视为一种生理“流量平台”。得出的结论是,一旦流量在以解剖和/或功能奇点为特征的顺应性结构中相互作用,就必须考虑二元模型背后的相互作用概念。

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