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呼吸模式对具有不对称肺泡导管模型中气体混合的影响。

Effect of breathing pattern on gas mixing in a model with asymmetrical alveolar ducts.

作者信息

Bowes C L, Richardson J D, Cumming G, Horsfield K

出版信息

J Appl Physiol (1985). 1985 Jan;58(1):18-26. doi: 10.1152/jappl.1985.58.1.18.

Abstract

A model of the pulmonary airways was used to study three single-breath indices of gas mixing, dead space (VD), slope of the alveolar plateau, and alveolar mixing inefficiency (AMI). In the model, discrete elements of airway volume were represented by nodes. Using a finite difference technique the differential equation for simultaneous convection and diffusion was solved for the nodal network. Conducting airways and respiratory bronchioles were modeled symmetrically, but alveolar ducts asymmetrically, permitting interaction between convection and diffusion. VD, alveolar slope, and AMI increased with increasing flow. Similar trends were seen with inspired volume, although slope decreased at high inspired volumes with constant flow. VD was affected most by inspiratory flow and AMI and alveolar slope by expiratory time. VD fell approximately exponentially with time of breath holding. Eight different breathing patterns were compared. They had a small effect on alveolar slope and AMI and a greater effect on VD. The model shows how series and parallel inhomogeneity occur together and interact in asymmetrical systems: the old argument as to which is the more important should be abandoned.

摘要

使用一个肺气道模型来研究气体混合的三个单次呼吸指标

死腔(VD)、肺泡平台斜率和肺泡混合低效性(AMI)。在该模型中,气道容积的离散元素由节点表示。使用有限差分技术,为节点网络求解了同时包含对流和扩散的微分方程。传导气道和呼吸性细支气管采用对称建模,但肺泡管采用不对称建模,从而允许对流和扩散之间的相互作用。VD、肺泡斜率和AMI随流量增加而增加。在吸入容积增加时也观察到类似趋势,不过在恒定流量下高吸入容积时斜率会下降。VD受吸气流量影响最大,而AMI和肺泡斜率受呼气时间影响。VD随屏气时间大致呈指数下降。比较了八种不同的呼吸模式。它们对肺泡斜率和AMI影响较小,对VD影响较大。该模型展示了串联和并联不均匀性如何在不对称系统中共同出现并相互作用:关于哪一个更重要的旧有争论应该被摒弃。

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