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微粒加湿法在气管切开非机械性通气患者气道湿化中的临床效果 被引量:4
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作者 王凤珍 钟雪梅 +2 位作者 张宇皓 叶婷 刘华之 《中国当代医药》 CAS 2021年第15期52-55,59,共5页
目的探讨微粒加湿法在气管切开非机械性通气患者气道湿化中的临床效果。方法选取2018年1月~2020年2月赣南医学院第一附属医院重症医学科收治的66例气管切开非机械性通气患者作为研究对象。采用随机数字表法将其分为实验组(33例)和对照组... 目的探讨微粒加湿法在气管切开非机械性通气患者气道湿化中的临床效果。方法选取2018年1月~2020年2月赣南医学院第一附属医院重症医学科收治的66例气管切开非机械性通气患者作为研究对象。采用随机数字表法将其分为实验组(33例)和对照组(33例)。实验组采用微粒加湿法,对照组患者采用传统持续气道滴入法。比较两组患者的痰液pH值、吸痰次数、血氧饱和度(SpO2)值、湿化软管脱落次数、单次湿化装置护理时间和湿化装置费用。结果实验组患者的痰液pH值在干预后第3、4、5、6、7天高于对照组,差异有统计学意义(P<0.05);实验组患者的吸痰次数在干预后第3、4、5、7天低于对照组,差异有统计学差异(P<0.05);实验组患者的SpO2值在干预后第3、4、5、6、7天高于对照组,差异有统计学意义(P<0.001);实验组湿化软管脱落次数少于对照组,单次湿化装置护理时间短于对照组,湿化装置护理费用低于对照组,差异有统计学意义(P<0.001)。结论微粒加湿法有利于提高痰液pH和SpO2值、减少吸痰的次数、单次湿化装置护理时间和湿化装置费用,能减轻护理工作量、减少患者住院费用开支。 展开更多
关键词 微粒加湿法 气管切开 气道湿化 非机械性通气
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Experimental Study on the Effect of Humidification on the Pollution Characteristics of Particulate Matter in the Office 被引量:1
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作者 Yuefen Gao Shanshan Nan +1 位作者 Guozhong Zheng Tingting Gao 《Journal of Environmental Protection》 2016年第12期1791-1801,共12页
Indoor air quality has a direct impact on human health. Indoor air quality has aroused great concern. This experimental study compares the effects of different water humidification on the indoor particulate pollution ... Indoor air quality has a direct impact on human health. Indoor air quality has aroused great concern. This experimental study compares the effects of different water humidification on the indoor particulate pollution characteristics, and analyzes the mass concentration and the particulate number concentration distribution of different sizes of particulates with time under each condition of the purified water humidification, the tap water humidification and the cold boiled water humidification in the office. The results show that under the three kinds of wetting conditions, the concentration of the fine particulates is higher. More minerals are contained in the tap water and the cold boiled water, so the two kinds of humidification have more significant impact on indoor particulate matter. But the purified water humidification has nearly no significant effect on it. The calcium and magnesium ionic compounds are partly removed after the water boiled, so the cold boiled water humidification has less impact on the indoor particulate matter than the tap water humidification. The mass concentration and particulate number concentration of the particle may also be affected due to the frequency of ultrasonic vibration. 展开更多
关键词 humidification particulate Matter Pollution Characteristics particulate Mass Concentration particulate Number Concentration
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