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A lung model to demonstrate dynamic gas trapping and intrinsic positive end-expiratory pressure at realistic ventilation settings

机译:一种肺模型,以展示现实通风环境中动态气体捕获和内在末端呼气压力

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摘要

Intrinsic positive end-expiratory pressure (PEEP) and gas trapping are recognised hazards during ventilation of patients with airflow obstruction. Demonstration of these phenomena on conventional lung models using realistic ventilation settings is difficult. We describe an Intrinsic PEEP Model that is able to demonstrate dynamic gas trapping and intrinsic PEEP at realistic ventilation settings, and demonstrate its ability to develop intrinsic PEEP in a timeframe useful for teaching. The model uses a Heimlich valve to permit a lower resistance on inspiration than expiration. The model was tested using a series of typical ventilation settings which, when applied in a clinical setting on patients with airflow obstruction issues, would result in prolonged low expiratory flow and the development of intrinsic PEEP of 10 to 20 cmH(2)O, and ultimately significant gas trapping. The IPM can be used to demonstrate this effect and the ventilator adjustments required to minimise these problems.
机译:本征正终端呼气压力(窥视)和气体捕获是在气流阻塞患者的通风过程中的危险。 使用现实通风设置在传统肺模型上展示这些现象。 我们描述了一种内在的窥视模型,能够在现实的通风环境中展示动态气体捕获和固有窥视,并证明其在有用的教学中开发内在窥视的能力。 该模型使用Heimlich阀来允许灵感的较低电阻而不是到期。 使用一系列典型通风设置测试该模型,当在气流障碍问题患者的临床环境中应用时,将导致延长的低呼气流量和10至20 cmh(2)o的内在窥视的开发, 最终的气体捕获。 IPM可用于证明这种效果,并且需要最小化这些问题所需的呼吸机调整。

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