Pulmonary Engineering Laboratory, Biomedical Engineering Program, COPPE-Federal University of Rio de Janeiro, RJ, Brazil.
Biomed Eng Online. 2010 Jul 30;9:36. doi: 10.1186/1475-925X-9-36.
The positive end-expiratory pressure (PEEP) for the mechanical ventilation of small animals is frequently obtained with water seals or by using ventilators developed for human use. An alternative mechanism is the use of an on-off expiratory valve closing at the moment when the alveolar pressure is equal to the target PEEP. In this paper, a novel PEEP controller (PEEP-new) and the PEEP system of a commercial small-animal ventilator, both based on switching an on-off valve, are evaluated.
The proposed PEEP controller is a discrete integrator monitoring the error between the target PEEP and the airways opening pressure prior to the onset of an inspiratory cycle. In vitro as well as in vivo experiments with rats were carried out and the PEEP accuracy, settling time and under/overshoot were considered as a measure of performance.
The commercial PEEP controller did not pass the tests since it ignores the airways resistive pressure drop, resulting in a PEEP 5 cmH2O greater than the target in most conditions. The PEEP-new presented steady-state errors smaller than 0.5 cmH2O, with settling times below 10 s and under/overshoot smaller than 2 cmH2O.
The PEEP-new presented acceptable performance, considering accuracy and temporal response. This novel PEEP generator may prove useful in many applications for small animal ventilators.
小动物机械通气的呼气末正压(PEEP)通常通过水封或使用为人类开发的呼吸机来获得。另一种机制是使用在肺泡压力等于目标 PEEP 时关闭的通断呼气阀。本文评估了一种基于切换通断阀的新型 PEEP 控制器(PEEP-new)和一种商业小动物呼吸机的 PEEP 系统。
所提出的 PEEP 控制器是一个离散积分器,在吸气周期开始之前监测目标 PEEP 和气道开放压力之间的误差。在体外和体内进行了大鼠实验,将 PEEP 精度、稳定时间和欠/过冲作为性能的衡量标准。
商用 PEEP 控制器未能通过测试,因为它忽略了气道阻力压降,导致在大多数情况下 PEEP 比目标值高 5cmH2O。PEEP-new 的稳态误差小于 0.5cmH2O,稳定时间小于 10s,欠/过冲小于 2cmH2O。
PEEP-new 的性能可接受,考虑到准确性和时间响应。这种新型 PEEP 发生器可能在许多小动物呼吸机的应用中证明有用。