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高频振荡期间频率和平均气道压力对潮气量输送的影响。

The effect of frequency and mean airway pressure on volume delivery during high-frequency oscillation.

作者信息

Chan V, Greenough A, Milner A D

机构信息

Department of Child Health, King's College Hospital, London, U.K.

出版信息

Pediatr Pulmonol. 1993 Mar;15(3):183-6. doi: 10.1002/ppul.1950150310.

Abstract

The performance of a commercially available oscillator (SensorMedics 3100) at different frequencies was assessed. A frequency response curve of a pneumotachograph system was constructed and this was used to measure the volume delivered by the oscillator to a lung model. The volume delivered by a constant diaphragm displacement was demonstrated to be inversely proportional to the frequency, but unaffected by increasing mean airway pressure from 15 to 25 cm H2O. The volume delivered during high frequency oscillation (HFO) was then assessed in 8 infants, median gestational age 29 weeks. The infants were studied at two frequencies, 10 and 15 Hz, both of which were used at two levels of mean airway pressure (MAP): 2 and 5 cm H2O above the MAP level previously used during conventional ventilation. The delivered volume was not significantly different at the two MAP levels, but was significantly greater at 10 than 15 Hz at both MAP levels (P < 0.03); at MAP +2 cm H2O above baseline the reduction in delivered volume was from a median of 1.54 mL/kg (range, 0.88-3.12) at 10 Hz to 1.18 mL/kg (range, 0.65-4.5) at 15 Hz. These results suggest that higher frequencies would require an increase in the oscillator displacement if effective gas exchange is to be maintained.

摘要

评估了一种市售振荡器(SensorMedics 3100)在不同频率下的性能。构建了肺量计系统的频率响应曲线,并用于测量振荡器输送到肺模型的容积。结果表明,在恒定膜片位移情况下输送的容积与频率成反比,但不受平均气道压力从15 cm H₂O增加到25 cm H₂O的影响。随后对8名中位胎龄29周的婴儿进行高频振荡(HFO)期间输送容积的评估。在两个频率(10 Hz和15 Hz)下对婴儿进行研究,这两个频率均在高于先前常规通气时使用的平均气道压力(MAP)水平2 cm H₂O和5 cm H₂O的两个水平下使用。在两个MAP水平下输送的容积无显著差异,但在两个MAP水平下,10 Hz时的输送容积均显著大于15 Hz时的输送容积(P < 0.03);在高于基线MAP +2 cm H₂O时,输送容积的减少量从10 Hz时的中位数1.54 mL/kg(范围0.88 - 3.12)降至15 Hz时的1.18 mL/kg(范围0.65 - 4.5)。这些结果表明,如果要维持有效的气体交换,更高的频率将需要增加振荡器的位移。

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