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首页> 外文期刊>Respiratory physiology & neurobiology >Mechanical loads modulate tidal volume and lung washout during high-frequency percussive ventilation.
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Mechanical loads modulate tidal volume and lung washout during high-frequency percussive ventilation.

机译:在高频打击通气期间,机械负荷会调节潮气量和肺冲洗。

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摘要

High-frequency percussive ventilation (HFPV) has been proved useful in patients with acute respiratory distress syndrome. However, its physiological mechanisms are still poorly understood. The aim of this work is to evaluate the effects of mechanical loading on the tidal volume and lung washout during HFPV. For this purpose a single-compartment mechanical lung simulator, which allows the combination of three elastic and four resistive loads (E and R, respectively), underwent HFPV with constant ventilator settings. With increasing E and decreasing R the tidal volume/cumulative oscillated gas volume ratio fell, while the duration of end-inspiratory plateau/inspiratory time increased. Indeed, an inverse linear relationship was found between these two ratios. Peak and mean pressure in the model decreased linearly with increasing pulsatile volume, the latter to a lesser extent. In conclusion, elastic or resistive loading modulates the mechanical characteristics of the HFPV device but in such a way that washout volume and time allowed for diffusive ventilation vary agonistically.
机译:高频冲击通气(HFPV)已被证明对急性呼吸窘迫综合征患者有用。然而,其生理机制仍知之甚少。这项工作的目的是评估HFPV期间机械负荷对潮气量和肺冲洗的影响。为此,对单室机械肺部模拟器进行HFPV,并在恒定的呼吸机设置下进行组合,该模拟器允许将三个弹性负载和四个阻力负载(分别为E和R)组合在一起。随着E的增加和R的减小,潮气量/累积振荡气体体积比降低,而吸气末期/吸气时间的持续时间增加。实际上,在这两个比率之间发现了反线性关系。模型中的峰值压力和平均压力随着脉动量的增加呈线性下降,后者的幅度较小。总而言之,弹性或电阻负载会调节HFPV装置的机械特性,但其方式是扩散通风所允许的冲洗量和时间会急剧变化。

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