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首页> 外文期刊>Respiratory physiology & neurobiology >Effects of mechanical load on flow, volume and pressure delivered by high-frequency percussive ventilation.
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Effects of mechanical load on flow, volume and pressure delivered by high-frequency percussive ventilation.

机译:机械负载对高频冲击通风传递的流量,体积和压力的影响。

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摘要

High-frequency percussive ventilation (HFPV) has proved its unique efficacy in the treatment of acute respiratory distress, when conventional mechanical ventilation (CMV) has demonstrated a limited response. We analysed flow ( [Formula: see text] ), volume (V) and airway pressure (Paw) during ventilation of a single-compartment mechanical lung simulator, in which resistance (R) and elastance (E) values were modified, while maintaining the selected ventilatory settings of the HFPV device. These signals reveal the physical effect of the imposed loads on the output of the ventilatory device, secondary to constant (millisecond by millisecond) alterations in pulmonary dynamics. [Formula: see text], V and Paw values depended fundamentally on the value of R, but their shapes were modified by R and E. Although peak Paw increased 70.3% in relation to control value, mean Paw augmented solely 36.5% under the same circumstances (maximum of 9.4cmH(2)O). Finally, a mechanism for washing gas out of the lung was suggested.
机译:当常规机械通气(CMV)表现出有限的反应时,高频冲击通气(HFPV)已证明其在治疗急性呼吸窘迫中的独特功效。我们分析了单室机械肺部模拟器通气期间的流量([公式:查看文字]),体积(V)和气道压力(Paw),在该模拟中,阻力(R)和弹性(E)值被修改,同时保持HFPV设备的选定通风设置。这些信号揭示了施加于负荷的通气设备输出的物理影响,这是肺动力不断变化(毫秒到毫秒)的继发现象。 [公式:参见文字],V和Paw值基本上取决于R的值,但它们的形状被R和E修改。尽管峰值Paw相对于控制值增加了70.3%,但在相同条件下,平均Paw仅增加了36.5%。情况(最大9.4cmH(2)O)。最后,提出了一种从肺中冲洗气体的机制。

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