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正压通气可改善休闲飞行过程中高海拔地区的血氧饱和度:一项飞行员研究。

Positive pressure ventilation improves oxygen saturation at altitude during recreational aviation: A pilot study.

作者信息

Taylor Jenna L, Downs Aidan K, Danner Crystal L, Downs J Hunter, Donkor Josh, Johnston Jessica I, Rozendaal Douglas, Larsen Peter L, Johnson Bruce D, Summerfield Douglas T

机构信息

Human Integrative and Environmental Physiology Laboratory, Department of Cardiovascular Medicine, Mayo Clinic, Rochester, Minnesota, USA.

Physiology and Ultrasound Laboratory for Science and Exercise (PULSE), School of Human Movement and Nutrition Sciences, The University of Queensland, Brisbane, Queensland, Australia.

出版信息

Physiol Rep. 2025 Feb;13(3):e70210. doi: 10.14814/phy2.70210.

Abstract

We investigated whether a commercial bi-level positive airway pressure (BPAP) device, would improve peripheral oxygen saturation (SpO) during recreational aviation up to 12,500 feet without supplemental oxygen. Ten adults with recreational flight experience (age:47 ± 14; female = 5) completed a standardized flight profile in an unpressurised aircraft, involving randomized crossover design at 8,000 feet and 12,500 feet with BPAP or control. SpO, middle cerebral artery velocity (MCAv), heart rate (HR), respiratory rate (RR), and relative tidal volume (TV) index were measured continuously. Psychomotor vigilance test (3-min) assessed reaction time halfway through taxi and altitude stages. Altitude significantly (p < 0.05) decreased mean SpO, MCAv, and RR, and increased TV index and HR. There was no effect of altitude (p > 0.05) on reaction time. BPAP increased mean SpO at 8,000 feet [Control: 92 ± 1%; BPAP: 94 ± 2%; mean difference (MD) = 2 ± 2%; p = 0.002] and 12,500 feet [Control: 86 ± 4%; BPAP: 89 ± 4%; MD = 2 ± 3%; p = 0.013]. BPAP lowered MCAv at 8,000 feet [Control: 53 ± 10 cm/s; BPAP: 50 ± 9 cm/s; MD = -3 ± 2 cm/s; p = 0.001] and 12,500 feet [Control: 52 ± 10 cm/s; BPAP: 50 ± 8 cm/s; MD = -2 ± 3 cm/s; p = 0.041]. BPAP increased TV index at 8,000 feet (Control: 6.6 ± 1.3; BPAP:8.1 ± 1.8; MD = 1.9 ± 0.8; p < 0.001) but not 12,500 feet, without effect on RR or reaction time. This study provides preliminary results that BPAP may improve mean SpO for recreational aviators up to 12,500 feet without supplemental oxygen.

摘要

我们研究了一种商用双水平气道正压通气(BPAP)设备,在不使用补充氧气的情况下,是否能在高达12500英尺的休闲飞行过程中提高外周血氧饱和度(SpO)。十名有休闲飞行经验的成年人(年龄:47±14岁;女性=5名)在一架未加压的飞机上完成了标准化飞行剖面,在8000英尺和12500英尺高度采用随机交叉设计,分别使用BPAP或作为对照。连续测量SpO、大脑中动脉血流速度(MCAv)、心率(HR)、呼吸频率(RR)和相对潮气量(TV)指数。在滑行和高度阶段中途,通过精神运动警觉性测试(3分钟)评估反应时间。高度显著(p<0.05)降低了平均SpO、MCAv和RR,并增加了TV指数和HR。高度对反应时间没有影响(p>0.05)。BPAP在8000英尺高度提高了平均SpO[对照组:92±1%;BPAP组:94±2%;平均差值(MD)=2±2%;p=0.002],在12500英尺高度也有提高[对照组:86±4%;BPAP组:89±4%;MD=2±3%;p=0.013]。BPAP在8000英尺高度降低了MCAv[对照组:53±10cm/s;BPAP组:50±9cm/s;MD=-3±2cm/s;p=0.001],在12500英尺高度也有降低[对照组:52±10cm/s;BPAP组:50±8cm/s;MD=-2±3cm/s;p=0.041]。BPAP在8000英尺高度增加了TV指数(对照组:6.6±1.3;BPAP组:8.1±1.8;MD=1.9±0.8;p<0.001),但在12500英尺高度没有增加,对RR或反应时间没有影响。本研究提供了初步结果,表明BPAP可能在不使用补充氧气的情况下,提高高达12500英尺高度的休闲飞行员的平均SpO。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ebab/11794239/53be6427f927/PHY2-13-e70210-g001.jpg

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