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首页> 外文期刊>Undersea and Hyperbaric Medicine: Journal of the Undersea and Hyperbaric Medical Society >Performance characteristics of high-frequency percussive ventilation under hyperbaric conditions.
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Performance characteristics of high-frequency percussive ventilation under hyperbaric conditions.

机译:性能特征的高频冲击高压下通风条件。

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Safe administration of critical care hyperbaric medicine requires specialized equipment and advanced training. Equipment must be tested in order to evaluate function in the hyperbaric environment. High-frequency percussive ventilation (HFPV) has been used in intensive care settings effectively, but it has never been tested in a hyperbaric chamber. Following a modified U.S. Navy testing protocol used to evaluate hyperbaric ventilators, we evaluated an HFPV transport ventilator in a multiplace hyperbaric chamber at 1.0, 1.9, and 2.8 atmospheres absolute (ATA). We used a test lung with analytical software for data collection. The ventilator uses simultaneous cyclic pressure-controlled ventilation at a pulsatile flow rate (PFR)/oscillatory continuous positive airway pressure (oCPAP) ratio of 30/10 with a high-frequency oscillation percussive rate of 500 beats per minute. Inspiratory and expiratory times were maintained at two seconds throughout each breathing cycle. During manned studies, the PFR/oCPAP ratios were 26/6, 22/7, and 22.5/8 at an airway resistance of 20cm H2O/L/second and 18/9, 15.2/8.5, and 13.6/7 at an airway resistance of 50 cm/H2O/L/second at 1, 1.9, and 2.8 ATA. The resulting release volumes were 800, 547, and 513 mL at airway resistance of 20 cm H2O/L/sec and 400, 253, and 180 mL at airway resistance of 50 cm/H2O/L/sec at 1, 1.9, and 2.8 ATA. Unmanned testing showed similar changes. The mean airway pressure (MAP) remained stable throughout all test conditions; theoretically, supporting adequate lung recruitment and gas exchange. A case where HFPV was used to treat a patient for CO poisoning was presented to illustrate that HFPV worked well under HBO2 conditions and no complications occurred during HBO2 treatment. The HFPV transport ventilator performed adequately under hyperbaric conditions and should be considered a viable option for hyperbaric critical care. This ventilator has atypical terminology and produces unique pulmonary physiology, thus requiring specialized training prior to use.
机译:安全管理关键护理高压医学需要专门的设备和先进的培训。为了评价函数在高压环境。通风(HFPV)已经被用于密集有效地保健机构,但它从来都不是测试在高压氧舱。美国海军测试协议用于修改评估高压通风,我们评价一个multiplace HFPV运输通风筒高压氧舱为1.0,1.9和2.8大气绝对(ATA)。为数据采集与分析软件。呼吸机使用同步循环在脉动的压力控制通气流量(再生)/振荡持续积极的气道压力(oCPAP)比例的30/10高频振荡冲击速度为500每分钟节拍。时间保持在两秒每一个呼吸周期。再生能源/ oCPAP比率是26/6、22/7和22.5/820厘米的气道阻力H2O / L /秒18/9, 15.2/8.5, 13.6/7的气道电阻50厘米/ H2O / L /秒,1.9,2.8 ATA。547年,513毫升20厘米的气道阻力H2O / L /秒和400、253和180毫升气道阻力50厘米/ H2O / L /秒,1.9和2.8ATA。平均气道压力(MAP)保持稳定在所有测试条件;支持适当的肺招聘和天然气交换。病人对CO中毒了说明HFPV HBO2下工作得很好条件,无并发症发生HBO2治疗。在高压条件下充分执行和应该考虑一个可行的选择高压急救护理。非典型术语并产生独特肺生理,因此需要专业使用前培训。

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