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帕尔高效呼吸回路过滤器——一种高效的热湿交换器。

The pall ultipor breathing circuit filter--an efficient heat and moisture exchanger.

作者信息

Chalon J, Markham J P, Ali M M, Ramanathan S, Turndorf H

出版信息

Anesth Analg. 1984 Jun;63(6):566-70.

PMID:6731877
Abstract

The Pall bacterial filter was tested as a potential heat and moisture exchanger on a model patient, placed on a circle absorber system, and clinically. The laboratory study was conducted during mechanical ventilation at a V of 6 L/min with fresh gas inflows of 1, 3 and 6 L/min. The model patient introduced carbon dioxide into the circuitry at a rate of 200 ml/min. The resistance of the filter was tested before and after each experiment. With all fresh gas inflows , absolute humidity increased from around 19 mg H2O/L at the start of experimentation to about 27 mg H2O/L within 30 min. Maximum humidities reached were 28 +/- 0.7 mg H2O/L, 27.6 +/- 0.5 mg H2O/L, and 27.7 +/- 0.5 mg H2O/L within 3 hr, with fresh gas inflows of 1, 3, and 6 L/min, respectively. Variations in inspired humidity were also assessed at minute volumes of 4 and 5 L/min with fresh gas inflows of 6 and 3 L/min. Increases in percent dead space were negligible when the filter was inserted between the model patients (assumed to weigh between 70-40 kg) and the circuit. There was no statistically significant increase in pressure with gas flows of 50 L/min when the instrument was dry (0.02 +/- 0.001 cm H2O/L X min-1) or when it was wet (0.02 +/- 0.002 cm H2O/L X min-1). The clinical study was conducted on ten adult anesthetized patients breathing through the bacterial filter and ten controls. The loss of body temperature was 0.2 degrees C when the filter was used and 1.5 degrees C when the filter was not used. Arterial blood gas tensions were within normal limits when the bacterial filter was used as a humidifier.

摘要

将颇尔细菌过滤器作为一种潜在的热湿交换器,在模型患者身上进行了测试,该模型患者放置在环形吸收器系统上,并进行了临床测试。实验室研究是在机械通气期间进行的,通气量为6升/分钟,新鲜气体流入量分别为1、3和6升/分钟。模型患者以200毫升/分钟的速率将二氧化碳引入回路。在每次实验前后测试过滤器的阻力。在所有新鲜气体流入情况下,绝对湿度从实验开始时的约19毫克H₂O/升在30分钟内增加到约27毫克H₂O/升。在3小时内,新鲜气体流入量分别为1、3和6升/分钟时,达到的最大湿度分别为28±0.7毫克H₂O/升、27.6±0.5毫克H₂O/升和27.7±0.5毫克H₂O/升。还在分钟通气量为4和5升/分钟、新鲜气体流入量为6和3升/分钟的情况下评估了吸入湿度的变化。当过滤器插入模型患者(假定体重在70 - 40千克之间)与回路之间时,死腔百分比的增加可忽略不计。当仪器干燥时(0.02±0.001厘米H₂O/升×分钟⁻¹)或湿润时(0.02±0.002厘米H₂O/升×分钟⁻¹),在气体流量为50升/分钟时压力没有统计学上的显著增加。临床研究是在十名通过细菌过滤器呼吸的成年麻醉患者和十名对照患者身上进行的。使用过滤器时体温下降0.2摄氏度,不使用过滤器时体温下降1.5摄氏度。当细菌过滤器用作加湿器时,动脉血气张力在正常范围内。

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