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作为加湿器的循环系统。

The circle system as a humidifier.

作者信息

Bengtson J P, Bengtson A, Stenqvist O

机构信息

Department of Anaesthesia and Intensive Care, Sahlgren Hospital, University of Göteborg, Sweden.

出版信息

Br J Anaesth. 1989 Oct;63(4):453-7. doi: 10.1093/bja/63.4.453.

Abstract

In a laboratory model, humidity output was investigated in relation to the design of a circle absorber system. A 70-kg subject was simulated with fresh gas flows of 0.5, 2 or 5 litre min-1. Different circle systems, absorption canisters and tubings were studied. It was found that both the type of circle system (according to Eger's classification) and the size of the absorption canister, influenced the humidity of inspired gases. Coaxial tubing only moderately increased the humidity. If a fresh gas flow of 0.5 liter min-1 was used, optimum moisture contents were attained, irrespective of the circle system tested. Low fresh gas flows, a small canister and an Eger A type circle system, were factors which increased humidification.

摘要

在一个实验室模型中,针对循环吸收器系统的设计对湿度输出进行了研究。使用0.5、2或5升/分钟的新鲜气流模拟一名70千克的受试者。研究了不同的循环系统、吸收罐和管道。结果发现,循环系统的类型(根据埃格的分类)和吸收罐的尺寸都会影响吸入气体的湿度。同轴管道只会适度增加湿度。如果使用0.5升/分钟的新鲜气流,无论测试的循环系统如何,都能达到最佳的水分含量。低新鲜气流、小吸收罐和埃格A型循环系统是增加加湿的因素。

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