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需求阀通气回路施加的吸气功。

Inspiratory work imposed by demand valve ventilator circuits.

作者信息

Oh T E, Lin E S, Bhatt S

机构信息

Department of Anaesthesia and Intensive Care, Chinese University of Hong Kong, Prince of Wales Hospital, Shatin.

出版信息

Anaesth Intensive Care. 1991 May;19(2):187-91. doi: 10.1177/0310057X9101900205.

Abstract

The inspiratory work (WI) imposed by three commonly used demand valve ventilator circuits was studied using a lung model to simulate spontaneous ventilation. The CPU-1 and Engstrom Erica circuits recorded WI of 379 mJ/l and 190 mJ/l respectively. A negative WI of -32 mJ/l was recorded for the Servo 900C, denoting that the circuit performed work on the lung. The demand valves recorded a time delay between inspiratory effort and onset of gas flow, of 300 ms (CPU-1), 190 ms (Servo 900c) and 160 ms (Engstrom Erica). Both the Servo 900C and Engstrom Erica demand valves were able to generate a high inspiratory gas flow response, but the CPU-1 lacked such a flow compensation. Expiratory work was also greatest with the CPU-1 (156 mJ/l) with 141 mJ/l and 90 mJ/l recorded for the Servo 900C and Engstrom Erica. Of the three ventilators studied, the Servo 900C appears to be the ventilator circuit of choice for spontaneous ventilation.

摘要

使用肺模型模拟自主通气,研究了三种常用按需阀通气机回路施加的吸气功(WI)。CPU - 1回路和Engstrom Erica回路记录的WI分别为379 mJ/l和190 mJ/l。Servo 900C记录的WI为 - 32 mJ/l,表明该回路对肺做功。按需阀记录的吸气用力与气流开始之间的时间延迟分别为300 ms(CPU - 1)、190 ms(Servo 900C)和160 ms(Engstrom Erica)。Servo 900C和Engstrom Erica按需阀都能够产生高吸气气流响应,但CPU - 1缺乏这种流量补偿。呼气功也是CPU - 1最大(156 mJ/l),Servo 900C和Engstrom Erica分别记录为141 mJ/l和90 mJ/l。在所研究的三种通气机中,Servo 900C似乎是自主通气的首选通气机回路。

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