首页> 外文期刊>The Open Medical Devices Journal >Acoustic Parameters for Optimizing Lung Volume During High- Frequency Oscillatory Ventilation in Infants with Respiratory Distress Syndrome: A Feasibility Study
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Acoustic Parameters for Optimizing Lung Volume During High- Frequency Oscillatory Ventilation in Infants with Respiratory Distress Syndrome: A Feasibility Study

机译:声学参数优化呼吸窘迫综合征婴儿高频振荡通气时的肺容量:一项可行性研究

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During high-frequency oscillatory ventilation (HFOV), the primary variable affecting lung volume is the mean airway pressure (MAP). To effectively maintain lung recruitment and optimal gas exchange without overstretching (or collapsing) the lung, MAP should be set between the lower and upper inflection points of the pressure-volume curve of the lung. At present, there is no efficacious means that allows the neonatologist to determine the MAP (optimal MAP) which attains optimal lung expansion and avoids overdistension. Thus, MAP is usually adjusted by trial and error or by clinical experience of the user. In this study, we investigated the acoustic properties of the neonate lung in six newborns undergoing high frequency oscillatory ventilation, to assess its usefulness as a means for determining optimal mean airway pressure. We found that the shape of the acoustic reflection-pressure curve was similar to the shape of the known pressure-volume curve. In all subjects, the estimated range of MAP was in congruence with the pressure chosen by the neonatologist. The acoustic measurements indicated of an increase in lung volume following administration of exogenous surfactant. Hysteresis in the amplitude of acoustic reflection was measured as expected. Our results indicate that the acoustic technique provides useful information about the state of lung recruitment during HFOV and may be helpful in identifying the adequate MAP for optimal lung expansion without overdistension.
机译:在高频振荡通气(HFOV)中,影响肺活量的主要变量是平均气道压力(MAP)。为了有效地保持肺部募集和最佳的气体交换而不会过度拉伸(或使肺塌陷),应在肺部压力-容量曲线的上下拐点之间设置MAP。目前,尚无有效的方法可让新生儿科医生确定可实现最佳肺扩张并避免过度扩张的MAP(最佳MAP)。因此,通常通过反复试验或通过用户的临床经验来调整MAP。在这项研究中,我们调查了六个接受高频振荡通气的新生儿的新生儿肺的声学特性,以评估其作为确定最佳平均气道压力的手段的有效性。我们发现,声反射-压力曲线的形状类似于已知的压力-体积曲线的形状。在所有受试者中,MAP的估计范围与新生儿科医生选择的压力一致。声学测量表明外源性表面活性剂给药后肺体积增加。按预期测量声反射幅度的磁滞。我们的结果表明,声学技术可提供有关HFOV期间肺复张状态的有用信息,并且可能有助于确定适当的MAP,以实现最佳的肺扩张而不会过度扩张。

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