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The transient relationship between pressure and volume in the pediatric pulmonary system.

机译:小儿肺系统压力与容量之间的瞬时关系。

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摘要

An accurate understanding of the relationship between pulmonary pressure and volume is required for modeling pulmonary mechanics in a variety of clinical applications. In this study the experimental techniques and mathematical formulations used to characterize viscoelastic materials are applied to characterize transient pulmonary compliance in juvenile swine. Fixed volumes of air were insufflated into 5 swine and held constant for 45 s while the transient decay in tracheal pressure was measured. An analytical model was developed using an optimization scheme that maximized the model fit to the experimental data over the entire time convolution. The initial injected volume was varied to assess the spatial and temporal linearity of the behavior. Model performance was assessed by comparing measured and predicted pressure during insufflations of erratic volume waveforms. It is concluded that the pulmonary impedance of healthy juveniles can be adequately described over a wide volume and frequency range using a relatively simple 5-parameter model that is linear both spatially and temporally.
机译:在各种临床应用中为肺部力学建模时,需要准确了解肺动脉压与容积之间的关系。在这项研究中,用于表征粘弹性材料的实验技术和数学公式被用于表征幼猪的短暂肺顺应性。将固定体积的空气注入5只猪,并保持恒定45 s,同时测量气管压力的瞬时衰减。使用优化方案开发了一个分析模型,该模型在整个时间卷积中最大化了模型与实验数据的拟合度。改变初始注射量以评估行为的空间和时间线性。通过比较不稳定的体积波形注入期间测得的压力和预测的压力来评估模型性能。结论是,使用相对简单的在空间和时间上都是线性的五参数模型,可以在较宽的体积和频率范围内充分描述健康少年的肺部阻抗。

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