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Comparison of total resistive work of breathing in two generations of ventilators in an animal model.

机译:比较动物模型中两代呼吸机的总呼吸阻力。

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Spontaneous breathing through an endotracheal tube and ventilator circuit is associated with an increased work of breathing (WOB). Recently, pediatric ventilators have introduced improved features to optimize patient-ventilator interactions. We performed an experiment utilizing an animal model to compare total resistive WOB of two widely used ventilators, the Siemens Servo Ventilator 300 (SV300) with patient-optimized features, such as flow-triggering and rapid response time, and the Siemens 900C (S900C) without those features. A total of 120 experiments of 10 minutes duration each were performed in 6 anesthetized, intubated lambs. In each experiment, the animal was randomized to either pressure support ventilation (PSV) of 5 cm H2O, or continuous positive airway pressure (CPAP) with 0 cmH2O end expiratory pressure (ZEEP) while supported by the SV300 or the S900C. Each animal was used as its own control. WOB was measured with a Bicore monitoring device as WOB of the animal (WOBp), WOB of the ventilator(WOBv), and the pressure time product (PTP) for each breath during the experiment. Oxygen consumption (Vo2) of the animal was measured using breath-by-breath gas analysis with a customized metabolic monitoring system. A Wilcoxon signed rank sum test was used for analysis. All comparisons between the ventilators for both CPAP and PSV showed a statistically significant difference (p < 0.001). WOBp was reduced by 47% during pressure support ventilation (PSV) and by 47% during CPAP when the SV300 was used compared to the S900C. We conclude that WOB is significantly lower in animals ventilated with the SV300 than with the S900C ventilator, and we speculate that ventilators with the features of the SV300 may offer advantages in ventilating pediatric patients.
机译:通过气管内导管和呼吸机回路的自发呼吸与呼吸功(WOB)增加有关。近来,儿科呼吸机已引入改进的功能以优化患者-呼吸机的相互作用。我们使用动物模型进行了一项实验,比较了两种广泛使用的呼吸机的总阻力WOB,即具有患者优化功能(如流量触发和快速响应时间)的西门子伺服呼吸机300(SV300)和西门子900C(S900C)没有这些功能。在6只麻醉的插管小羊中进行了120次实验,每次实验持续10分钟。在每个实验中,在SV300或S900C支撑下,将动物随机分配至5 cm H2O的压力支持通气(PSV)或呼气终末压力为0 cmH2O的持续气道正压(CPAP)。每只动物用作其自己的对照。用Bicore监测设备测量WOB,例如动物的WOB(WOBp),呼吸机的WOB(WOBv)以及实验期间每次呼吸的压力时间乘积(PTP)。动物的氧气消耗量(Vo2)使用带有定制代谢监测系统的逐呼吸气体分析法进行测量。使用Wilcoxon有符号秩和检验进行分析。 CPAP和PSV呼吸机之间的所有比较均显示出统计学上的显着差异(p <0.001)。与S900C相比,使用SV300时,在压力支持通气(PSV)期间,WOBp降低了47%,在CPAP期间,WOBp降低了47%。我们得出结论,用SV300进行通气的动物的WOB明显低于使用S900C呼吸机的动物,并且我们推测具有SV300功能的呼吸机可能在给小儿患者通气方面具有优势。

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