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在使用VDR-4®故障安全呼吸回路集线器进行高频振荡通气期间对三种加湿器的比较。

Comparison of three humidifiers during high-frequency percussive ventilation using the VDR-4® Fail-safe Breathing Circuit Hub.

作者信息

Tiffin Norman H, Short Kathy A, Jones Samuel W, Cairns Bruce A

机构信息

Department of Surgery, Division of Burn Surgery, University of North Carolina, Chapel Hill, USA.

出版信息

J Burn Care Res. 2011 May-Jun;32(3):e45-50. doi: 10.1097/BCR.0b013e318217f864.

Abstract

The VDR-4® high-frequency percussive ventilator (HFPV) has been shown to be beneficial in the management of inhalation injury by improving secretion clearance while maintaining oxygenation and ventilation. Delivery of gas flow during HFPV could lack adequate humidification delivered to the patient because a major portion of the delivered gas flow would bypass the humidifier when using the original VDR-4® ventilator circuit. The authors tested a novel inline vaporizing humidifier and two gas-water interface humidifiers during HFPV using the new VDR-4® Fail-safe Breathing Circuit Hub® to determine whether delivered humidification could be improved. This new humidification system, the Hydrate Omni™, delivers water vapor into the gas flow of the ventilator circuit rather than water droplets as delivered by the gas-water interface humidifiers. Measurements of absolute humidity and gas temperature were made on the three different humidification systems using a test lung model under standard ambient conditions. The authors found that when using the novel inline vaporizer, it provided better humidification when compared with the standard gas-water interface humidifier during HFPV using the new VDR-4® breathing circuit.

摘要

VDR-4®高频冲击呼吸机(HFPV)已被证明在吸入性损伤的管理中有益,它可在维持氧合和通气的同时改善分泌物清除。在使用原始VDR-4®呼吸机回路时,HFPV期间的气流输送可能缺乏输送给患者的足够湿度,因为大部分输送的气流会绕过加湿器。作者使用新型VDR-4®故障安全呼吸回路集线器®在HFPV期间测试了一种新型在线蒸发加湿器和两种气水界面加湿器,以确定是否可以改善输送的湿度。这种新的加湿系统Hydrate Omni™将水蒸气输送到呼吸机回路的气流中,而不是像气水界面加湿器那样输送水滴。在标准环境条件下,使用测试肺模型对三种不同的加湿系统进行了绝对湿度和气体温度的测量。作者发现,在使用新型VDR-4®呼吸回路进行HFPV时,与标准气水界面加湿器相比,使用新型在线蒸发器时可提供更好的加湿效果。

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