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首页> 外文期刊>Undersea and Hyperbaric Medicine: Journal of the Undersea and Hyperbaric Medical Society >Decompression profile and bubble formation after dives with surface decompression: experimental support for a dual phase model of decompression.
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Decompression profile and bubble formation after dives with surface decompression: experimental support for a dual phase model of decompression.

机译:带表面减压的潜水后的减压曲线和气泡形成:实验支持的双相减压模型。

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摘要

The present study was initiated in order to determine the effect of decompression profiles on bubble formation following surface decompression using oxygen. Following an air dive to 496 kPa (130 fsw) for 90 minutes, three different profiles were tested in the pig; a USN staged decompression profile, a profile using linear continuous decompression with the same total decompression time as the USN profile (ABI) and a linear profile with half the total decompression time compared to the the first two (ABII). The subsequent surface decompression at 220 kPa lasted 68 minutes for all three schedules. The study demonstrated that, following final decompression, the two linear profiles produced the lowest amount of vascular gas, with the fastest profile producing significantly less bubbles in the Pulmonary artery than the other two. Similar results were obtained in the jugular vein. The results are in qualitative agreement with model simulation using the Reduced Gradient Bubble Model (RGBM), demonstrating that the controlling tissues are reduced from those with a half time of 40 minutes using the USN procedure to 5 minutes using the fastest linear profile.
机译:为了确定减压曲线对使用氧气进行表面减压后气泡形成的影响,开始了本研究。空气潜入496 kPa(130 fsw)90分钟后,对猪进行了三种不同的测试; USN分级减压曲线,使用线性连续减压的曲线,其总减压时间与USN曲线(ABI)相同,而线性曲线的总减压时间为前两个曲线(ABII)的一半。随后的三个时间表中,在220 kPa进行的后续表面减压持续了68分钟。研究表明,在最终减压后,两个线性轮廓产生的血管气体量最少,而最快的轮廓在肺动脉中产生的气泡明显少于其他两个。在颈静脉中获得了相似的结果。结果与使用减少梯度气泡模型(RGBM)进行的模型模拟在质量上吻合,表明控制组织从使用USN程序的40分钟半时间的组织减少到使用最快线性轮廓的5分钟。

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