首页> 外文期刊>Aviation, space, and environmental medicine. >Performance of emergency underwater breathing systems in cool (25 degrees C) and cold (12 degrees C) water.
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Performance of emergency underwater breathing systems in cool (25 degrees C) and cold (12 degrees C) water.

机译:紧急水下呼吸系统在冷(25摄氏度)和冷(12摄氏度)水中的性能。

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INTRODUCTION: The shortfall between breath-hold time on cold-water immersion and the time required to make an underwater escape from a helicopter provides the rationale for emergency underwater breathing systems (EUBS) for passengers flying over cold water. This study compared three types of EUBS: a compressed gas system (CG); a rebreather system (RB); and a hybrid system (H). METHODS: Each EUBS was examined during water deployment (W(dep)) and over 90 s in cool (25 degrees C) and cold water (12 degrees C) immersion to the neck (Imm) and submersion (Subm). Subjects wore standardized clothing, including dry suit. Measures included: W(dep) time, stay time (Imm and Subm), dyspnea rating, O2 and CO2 remaining in rebreather bags [H and RB (partial pressure mmHg)], and gas volume used (CG). RESULTS: Mean data show W(dep) was slowest in the H (17.7 s) compared to the RB (10.0 s) and CG (8.1 s). Stay time was greatest in the H (90.0 s) compared to the RB (68.3 s) and CG (87.0 s); stay time in CG was also greater than RB. Dyspnea ratings were greater in RB trials (6.5 cm) compared to the CG (2.4 cm) and H (1.9 cm). Across devices, stay time in cold water was shorter during submersion than immersion (85.9 s vs. 70.1 s). During submersion stay time was shorter in cold compared to cool water (12 degrees C: 62.8 s; 25 degrees C: 77.5 s). DISCUSSION: The data suggest that the CG and H devices outperformed the RB device, but the H device required longer to deploy.
机译:简介:冷水浸泡时的屏气时间与从直升机水下逃生所需的时间之间的差额,为在冷水上飞行的乘客提供了紧急水下呼吸系统(EUBS)的理由。这项研究比较了三种EUBS:一种是压缩气体系统(CG);另一种是压缩气体系统。循环呼吸系统(RB);和混合动力系统(H)。方法:每个EUBS在水部署期间(W(深度))以及在凉爽(25摄氏度)和冷水(12摄氏度)浸入脖子(Imm)和浸入水中(Subm)的90 s内进行了检查。受试者穿着标准化服装,包括干式西服。度量包括:W(深度)时间,停留时间(Imm和Subm),呼吸困难等级,循环呼吸器袋中残留的O2和CO2 [H和RB(分压mmHg)]以及所用气体量(CG)。结果:平均数据显示,与RB(10.0 s)和CG(8.1 s)相比,W(dep)在H(17.7 s)中最慢。与RB(68.3 s)和CG(87.0 s)相比,H(90.0 s)的停留时间最大。在CG中的停留时间也大于RB。与CG(2.4 cm)和H(1.9 cm)相比,RB试验(6.5 cm)的呼吸困难等级更高。在整个设备中,浸入水中在冷水中的停留时间要比浸入时间短(85.9 s对70.1 s)。在淹没期间,冷水的停留时间比冷水短(12摄氏度:62.8 s; 25摄氏度:77.5 s)。讨论:数据表明CG和H设备的性能优于RB设备,但是H设备需要更长的部署时间。

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