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首页> 外文期刊>Journal of applied physiology >Inspiration regulates the rate and temporal pattern of lung liquid clearance and lung aeration at birth.
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Inspiration regulates the rate and temporal pattern of lung liquid clearance and lung aeration at birth.

机译:吸气调节出生时肺部液体清除和肺通气的速度和时间模式。

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摘要

At birth, the initiation of pulmonary gas exchange is dependent on air entry into the lungs, and recent evidence indicates that pressures generated by inspiration may be involved. We have used simultaneous plethysmography and phase-contrast X-ray imaging to investigate the contribution of inspiration and expiratory braking maneuvers (EBMs) to lung aeration and the formation of a functional residual capacity (FRC) after birth. Near-term rabbit pups (n = 26) were delivered by cesarean section, placed in a water plethysmograph, and imaged during the initiation of spontaneous breathing. Breath-by-breath changes in lung gas volumes were measured using plethysmography and visualized using phase-contrast X-ray imaging. Pups rapidly (1-5 breaths) generate a FRC (16.2 +/- 1.2 ml/kg) by inhaling a greater volume than they expire (by 2.9 +/- 0.4 ml.kg(-1).breath(-1) over the first 5 breaths). As a result, 94.8 +/- 1.4% of lung aeration occurred during inspiration over multiple breaths. The incidence of EBMs was rare early during lung aeration, with most (>80%) occurring after >80% of max FRC was achieved. Although EBMs were associated with an overall increase in FRC, 34.8 +/- 5.3% of EBMs were associated with a decrease in FRC. We conclude that lung aeration is predominantly achieved by inspiratory efforts and that EBMs help to maintain FRC following its formation.
机译:出生时,肺气体交换的开始取决于空气进入肺,最近的证据表明,可能涉及到由吸气产生的压力。我们已经使用同步体积描记法和相衬X射线成像技术来研究吸气和呼气制动动作(EBM)对肺通气的影响以及出生后功能性残余容量(FRC)的形成。通过剖宫产术将近期的幼崽(n = 26)放入剖腹产水体积描记器中,并在自发呼吸开始时对其成像。使用体积描记法测量每次呼吸的肺气量变化,并使用相差X射线成像进行可视化。幼仔快速(1-5次呼吸)通过吸入比其到期时更大的体积(以2.9 +/- 0.4 ml.kg(-1)吸入)产生FRC(16.2 +/- 1.2 ml / kg)。前5次呼吸)。结果,在多呼吸期间吸气发生了94.8 +/- 1.4%的肺通气。在肺通气早期,EBMs的发生率很少,大多数(> 80%)发生在最大FRC的> 80%之后。尽管EBM与FRC的总体升高有关,但34.8 +/- 5.3%的EBM与FRC的降低有关。我们得出的结论是,通气主要是通过吸气来实现的,而EBM有助于在形成FRC后维持FRC。

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