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三种热湿交换过滤器设计在潮湿条件下的气流阻力:对患者安全的影响

Air flow resistance of three heat and moisture exchanging filter designs under wet conditions: implications for patient safety.

作者信息

Morgan-Hughes N J, Mills G H, Northwood D

机构信息

Department of Anaesthesia and Intensive Care and Sheffield University, Sheffield S10 2JF, UK.

出版信息

Br J Anaesth. 2001 Aug;87(2):289-91. doi: 10.1093/bja/87.2.289.

Abstract

Heat and moisture exchanging filters (HMEFs) can be blocked by secretions. We have studied HMEF performance under wet conditions to see which particular design features predispose to this complication. Dar Hygrobac-S (composite felt filter and cellulose exchanger), Dar Hygroster (composite pleated ceramic membrane and cellulose exchanger) and Pall BB22-15 (pleated ceramic membrane) HMEFs were tested. Saline retention, saline concealment, and changes in air flow resistance when wet were assessed. The cellulose exchanger in the composite Hygrobac-S and Hygroster retained saline, producing a 'tampon' effect, associated with bi-directional air flow resistances in excess of the international standard of a 5 cm H(2)O pressure drop at 60 litre min(-1) air flow. Furthermore, high air flow resistances occurred before free saline was apparent within the transparent filter housing. The pleat only BB22-15 showed a significant increase in expiratory air flow resistance, but only after the presence of saline was apparent. These data imply that composite HMEFs with cellulose exchangers are more likely to block or cause excessive work of breathing as a result of occult accumulation of patient secretions than pleat only HMEFs.

摘要

热湿交换过滤器(HMEF)可能会被分泌物堵塞。我们研究了潮湿条件下HMEF的性能,以确定哪些特定设计特征易引发这种并发症。对Dar Hygrobac-S(复合毛毡过滤器和纤维素交换器)、Dar Hygroster(复合褶式陶瓷膜和纤维素交换器)和颇尔BB22 - 15(褶式陶瓷膜)HMEF进行了测试。评估了盐水潴留、盐水隐匿以及潮湿时气流阻力的变化。复合Hygrobac-S和Hygroster中的纤维素交换器会潴留盐水,产生“棉塞”效应,在气流为60升/分钟时,双向气流阻力超过国际标准的5厘米水柱压降。此外,在透明过滤器外壳内出现游离盐水之前,就已出现高气流阻力。仅褶式的BB22 - 15仅在出现盐水后呼气气流阻力才显著增加。这些数据表明,与仅褶式HMEF相比,带有纤维素交换器的复合HMEF由于患者分泌物的隐匿积聚更有可能堵塞或导致呼吸功增加。

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