首页> 外文期刊>Pediatric Pulmonology >Effect of leak around the endotracheal tube on measurements of pulmonary compliance and resistance during mechanical ventilation: a lung model study.
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Effect of leak around the endotracheal tube on measurements of pulmonary compliance and resistance during mechanical ventilation: a lung model study.

机译:气管内导管漏气对机械通气期间肺顺应性和阻力测量的影响:一项肺模型研究。

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We studied the effect of leaks around the endotracheal tube (ETT) on the measurement of pulmonary mechanics during mechanical ventilation. We also evaluated the influence of different ventilator settings on the magnitude of leak. An adjustable leak was created at the end of the ETT in a lung model with constant compliance. Flow, tidal volume, and pressure changes were measured above and below the leak. Compliance (Ci) and resistance (Ri) during inspiration were determined by linear regression analysis (LRA) using the equation of motion and the Mead and Wittenberger method (MWM). The ventilatory change that influenced the degree of leak most was prolongation of inspiratory time (Ti). The presence of a leak around the ETT resulted in an overestimation of the Ci and Ri values, which was proportional to the size of the leak. This overestimation was also influenced by the method used to determine Ci and Ri. Because the contribution of the leak to the fidal volume progressively increases as inspiration continued, methods of analysis that depended mainly on measurement points at the end of inspiration showed a larger deviation from the true Ci and Ri values than methods mainly influenced by measurement points at the beginning of inspiration. Because of this, shortening of inspiration, or analysis of points at the beginning of inspiration reduces the error in the measurements of Ci and Ri when a leak is present. Breaths with a large leak should be excluded from any analysis of pulmonary mechanics.
机译:我们研究了在机械通气过程中气管插管(ETT)周围泄漏对肺力学测量的影响。我们还评估了不同呼吸机设置对泄漏量的影响。在具有恒定顺应性的肺部模型中,ETT末端产生了可调节的泄漏。在泄漏的上方和下方测量流量,潮气量和压力变化。吸气期间的顺应性(Ci)和阻力(Ri)使用运动方程式以及Mead和Wittenberger方法(MWM)通过线性回归分析(LRA)确定。影响泄漏程度最大的通气变化是吸气时间(Ti)的延长。 ETT周围存在泄漏会导致高估Ci和Ri值,这与泄漏的大小成正比。这种高估也受到用于确定Ci和Ri的方法的影响。因为随着吸气的继续,泄漏对分叉体积的贡献逐渐增加,所以主要取决于吸气末尾测量点的分析方法与真实的Ci和Ri值相比,与主要受吸气点测量值影响的方法相比,存在更大的偏差。灵感的开始。因此,吸气的缩短或吸气开始时的点分析会减少出现泄漏时Ci和Ri的测量误差。肺力学分析应排除呼吸泄漏大的呼吸。

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