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九条成人呼吸机回路的气流阻力分析

Analysis of resistance to gas flow in nine adult ventilator circuits.

作者信息

Dennison F H, Taft A A, Mishoe S C, Hooker L L, Eatherly S B, Beckham R W

机构信息

Department of Respiratory Therapy, Medical College of Georgia, Augusta 30912.

出版信息

Chest. 1989 Dec;96(6):1374-9. doi: 10.1378/chest.96.6.1374.

Abstract

We measured the resistance in nine complete ventilator circuits, partial circuits and 7, 8, and 9 mm ID endotracheal tubes at flow rates of 20 to 120 liters per minute. We found a statistically significant (p less than 0.01) increase in resistive pressure with increases in flow rate, as the diameter of the ETT decreased, and as each component of the ventilator circuit was added to the ETT. There was a curvilinear increase in resistive pressure to increase in flow rate. However, when resistances were computed, the Bennett cascade "circuit" created higher resistance at 20 lpm than at flow rates up to 120 lpm. The Bennett cascade humidifier added the greatest resistive pressure, 3.5 to 8.5 cm H2O, the Engstrom Edith, 0.5 to 6.5 cm H2O, and the Conchapak added the least, 0.0 to 2.5 cm H2O at flow rates of 20 to 120 lpm. After all the components of the ventilator circuit were attached to the ETTs, there was approximately a 97 to 450 percent increase in resistive pressure compared to the resistive pressure created by the ETTs alone.

摘要

我们在流速为每分钟20至120升的情况下,测量了九个完整通气回路、部分回路以及内径为7、8和9毫米的气管内导管的阻力。我们发现,随着流速增加、气管内导管直径减小以及通气回路的每个组件添加到气管内导管上,阻力压力有统计学显著增加(p小于0.01)。阻力压力随流速增加呈曲线上升。然而,计算阻力时,贝内特串联“回路”在20升/分钟时产生的阻力高于流速高达120升/分钟时的阻力。在流速为20至120升/分钟时,贝内特串联加湿器增加的阻力压力最大,为3.5至8.5厘米水柱,恩格斯特龙伊迪丝加湿器为0.5至6.5厘米水柱,康查帕克加湿器增加的最少,为0.0至2.5厘米水柱。在通气回路的所有组件连接到气管内导管后,与仅由气管内导管产生的阻力压力相比,阻力压力大约增加了97%至450%。

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