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左右肺间相互通气的高频通气机制研究 被引量:5
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作者 袁越阳 陈宇清 +2 位作者 肖辉 戴征 刘炜 《生物医学工程学杂志》 EI CAS CSCD 北大核心 2019年第3期393-400,共8页
传统观念认为充足潮气量是满足呼吸的必要条件,但低气潮气量的高频通气仍能满足呼吸病患者的通气需求。为探究其通气机制,本文提出了高频通气下左右肺间存在相互通气这一观点,并开发设计了基于新鲜绵羊肺的高频通气实验平台,以测验高频... 传统观念认为充足潮气量是满足呼吸的必要条件,但低气潮气量的高频通气仍能满足呼吸病患者的通气需求。为探究其通气机制,本文提出了高频通气下左右肺间存在相互通气这一观点,并开发设计了基于新鲜绵羊肺的高频通气实验平台,以测验高频通气下左右肺间的通气气流。同时,还建立了基于呼吸道对气流的黏性阻力(R)、惯性阻力(I)和肺顺应性(C)的肺通气模型,并进行通气仿真分析,进一步从理论上探讨进入左右肺内的通气气流特征。本文实验与仿真结果均表明,在一定频率的高频震荡通气条件下,进入左右肺内的气流存在相位差,因而可以引起相互通气;即使进入肺部的总气流为0,左右肺间仍存在彼此气流交换现象。本文研究证实了高频通气下左右肺间相互通气气流的存在,这一现象将有利于肺部通气更为均匀,并提高肺内氧气的利用率。 展开更多
关键词 高频通气 通气机制 相互通气
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Research progress on the water vapor channel within the Yarlung Zsangbo Grand Canyon, China
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作者 Xuelong Chen Yajing Liu +9 位作者 Yaoming Ma Xiangde Xu Xin Xu Luhan Li Dianbin Cao Qiang Zhang Gaili Wang Maoshan Li Siqiong Luo Xin Wang 《Atmospheric and Oceanic Science Letters》 2024年第5期10-15,共6页
The Second Tibetan Plateau Scientific Expedition and Research Program tasked a research team with the“Investigation of the water vapor channel of the Yarlung Zsangbo Grand Canyon(INVC)”in the southeastern Tibetan Pl... The Second Tibetan Plateau Scientific Expedition and Research Program tasked a research team with the“Investigation of the water vapor channel of the Yarlung Zsangbo Grand Canyon(INVC)”in the southeastern Tibetan Plateau(TP).This paper summarizes the scientific achievements obtained from the data collected by the INVC observation network and highlights the progress in investigating the development of heavy rainfall events associated with water vapor changes.The rain gauge network of the INVC can represent the impacts of the Yarlung Zsangbo Grand Canyon(YGC)topography on precipitation at the hourly scale.The microphysical characteristics of the precipitation in the YGC are different than those in the lowland area.The GPM-IMERG(Integrated MultisatellitE Retrievals for Global Precipitation Measurement)satellite precipitation data for the YGC region should be calibrated before they are used.The meridional water vapor flux through the YGC is more important than the zonal flux for the precipitation over the southeastern TP.The decreased precipitation around the YGC region is partly due to the decreased meridional water vapor flux passing through the YGC.High-resolution numerical models can benefit precipitation forecasting in this region by using a combination of specific schemes that capture the valley wind and water vapor flux along the valley floor. 展开更多
关键词 Water vapor channel Land-air interaction Mountian meteorology Extreme rainfall Observation network
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