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1)  pressure of inspiration(Pi)
吸气压
2)  Peak inspiratory pressure
吸气峰压
1.
Objective:To study the relationship between minimum occlusive pressure of "high-volume low-pressure" endotracheal tube cuffs and airway peak inspiratory pressure in patients undergoing mechanical ventilation.
目的:探讨机械通气时应用最小闭合容量技术注气的气管导管的气囊压力与气道吸气峰压之间的关系。
3)  inspiratory peak airway pressure
吸气峰压
1.
The feasibility of evaluating the position of right-sided double-lumen endobronchial tubes by the changes of inspiratory peak airway pressure and cuff volume;
吸气峰压和套囊容量变化评估右双腔支气管导管管端位置的可行性
2.
The relationship between position of left-sided double-lumen endobronchial tubes and changes of inspiratory peak airway pressure and lung compliance in the left lateral decubitus position;
侧卧位时左双腔支气管导管管端位置与吸气峰压及肺顺应性的关系
4)  Nega tive pressure suction
负压吸气
5)  suction pressure
吸气压力
1.
The performance under the fixed suction pressure for a triple-evaporator air conditioning system(AC) was studied.
对三联式空调系统在定吸气压力下的运行特性进行考察。
2.
Control strategies featured with refrigerant suction pressure control, of the variable-speed compressor and electronic expansion valve were prop.
为此,本文以一拖三系统为例,采用集总参数法,建立起系统的动态热力学模型;同时提出了系统中变频压缩机和电子膨胀阀的控制策略,引入了吸气压力控制和以电子膨胀阀直接控制室温的思路;制定了带有调整因子的模糊控制方法;利用系统热力学模型对控制策略和方法进行仿真研究,仿真结果表明所提出的控制策略和方法是有效可行的,能取得满意的控制效果。
3.
According to the analysis the necessity and advantage of the control of suction pressure is presented here.
仿真结果表明在一拖三VRV空调系统中进行吸气压力控制的必要性与优越性,为系统的控制方法的制定以及系统的优化设计奠定基础。
6)  barometric suction
气压吸水
补充资料:吸气

  
  吸气
  

  气体进入肺脏的过程。
  
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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