...
首页> 外文期刊>Undersea and Hyperbaric Medicine: Journal of the Undersea and Hyperbaric Medical Society >Increased lung compliance in response to a moderate hyperoxic exposure.
【24h】

Increased lung compliance in response to a moderate hyperoxic exposure.

机译:响应中度高氧暴露,肺顺应性增加。

获取原文
获取原文并翻译 | 示例

摘要

With deep saturation diving a reduction in vital capacity caused by oxygen toxicity may be opposed by a training effect of respiratory muscles due to increased gas density and work of breathing. We measured lung and chest wall mechanics before and after a 28-day saturation dive to a pressure of 0.25 MPa with the same profile of oxygen exposure as in a deep dive to a pressure of 3.7 MPa; 40 kPa during the isopression phase and 50 kPa during the decompression phase. Eight males aged 22-28 yr served as subjects. The measurements included dynamic lung volumes, static lung compliance, lung recoil pressure, and maximal respiratory pressures. Only one subject had decreased lung compliance and increased recoil pressure after the dive. The others had an increase in compliance and decrease in recoil pressure. There was a significant increase in inspiratory lung compliance (P = 0.041) and a trend for a decrease in lung recoil pressure (P = 0.061). We found no change in forced vital capacity, but decreases in forced expired volume in 1 s (P = 0.049) and forced midexpiratory flow rate (P = 0.009) were noted. There were no changes in maximal respiratory pressures. These findings are opposite to the classical findings associated with pulmonary oxygen toxicity. The results may reflect an increase in surfactant production and turnover as an early adaptive response to hyperoxic stress.
机译:在深层饱和潜水中,由于氧气浓度增加和呼吸功增加,呼吸毒性的训练作用可能会抵消氧气毒性引起的肺活量降低。我们在饱和潜水28天至0.25 MPa的压力之前和之后测量了肺和胸壁的力学性能,与在深度潜水至3.7 MPa的压力下暴露的氧气量相同。在等压阶段为40 kPa,在减压阶段为50 kPa。对象为八名22-28岁的男性。测量包括动态肺容量,静态肺顺应性,肺后坐压力和最大呼吸压力。潜水后只有一名受试者的肺顺应性降低且后坐力增加。其他的则增加了顺从性并降低了后坐力。吸气肺顺应性显着增加(P = 0.041),肺后坐压降低趋势(P = 0.061)。我们发现强迫肺活量没有变化,但是在1 s内强迫呼气量减少(P = 0.049)和呼气中气流速(P = 0.009)降低。最大呼吸压力没有变化。这些发现与与肺氧中毒有关的经典发现相反。结果可能反映出表面活性剂生产和周转的增加,作为对高氧应激的早期适应性反应。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号