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首页> 外文期刊>Lung. >Effect of ventilation mode on gas exchange during partial liquid ventilation at different perfluorocarbon doses in surfactant-depleted lung.
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Effect of ventilation mode on gas exchange during partial liquid ventilation at different perfluorocarbon doses in surfactant-depleted lung.

机译:在表面活性剂耗尽的肺中,在不同全氟化碳剂量下部分液体通风期间,通风方式对气体交换的影响。

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Although gas ventilation is an integral part of partial liquid ventilation (PLV), the role of ventilation mode during PLV is not established, especially at a varying perfluorocarbon dose. In 10 surfactant-depleted rabbits, PLV was performed at a low dose (10 ml/kg) and at a functional residual capacity (FRC) dose (30 ml/kg) of perfluorodecalin in pressure-control (PC) and volume-control (VC) modes in balanced sequence. In these four PLV trials, PC mode was adjusted to be identical to VC mode with regard to tidal volume and inspiratory-to-expiratory ratio. PaO2 during PLV in PC mode was higher than in VC mode at the Low dose (159 plus minus 93 mm Hg, 115 plus minus 75 mm Hg, respectively: p = 0.005) and at the FRC dose (228 +/- 114 mm Hg, 164 +/- 104 mm Hg, respectively: p = 0.002). PaCO2 during PLV in PC mode was lower than in VC mode at the Low dose (59 +/- 18 mm Hg, 72 +/- 20 mm Hg, respectively: p = 0.005), whereas PaCO2 at the FRC dose was not different between modes. Curves of inspiratory flow appeared least deformed with PLV in PC mode at the Low dose, whereas they were saw-tooth deformed with PLV in VC mode at both doses. Actual time for inspiratory gas flow during PLV was shorter in PC mode compared with VC mode at both doses. In conclusion, in surfactant-depleted rabbit, gas exchange during PLV was better with PC mode compared with VC mode, especially at a low perfluorocarbon dose. Given the same tidal volume, PC appeared to insufflate the perfluorocarbon-filled lung better than VC at both low and FRC doses of perfluorocarbon.
机译:尽管气体通风是部分液体通风(PLV)不可或缺的一部分,但在PLV期间通风模式的作用尚未确立,尤其是在全氟化碳剂量不同的情况下。在10只表面活性剂枯竭的兔子中,在压力控制(PC)和音量控制(PC)中以低剂量(10 ml / kg)和功能性残留容量(FRC)剂量(30 ml / kg)的全氟萘烷进行PLV。 VC)模式的平衡顺序。在这四项PLV试验中,就潮气量和吸气与呼气比而言,将PC模式调整为与VC模式相同。低剂量(分别为159 +负93毫米汞柱,115 +负75毫米汞柱:p = 0.005)和FRC剂量(228 +/- 114毫米汞柱)时,PC模式下PLV期间的PaO2高于VC模式。 ,分别为164 +/- 104毫米汞柱:p = 0.002)。低剂量时PC模式下PLV期间的PaCO2低于VC模式下(分别为59 +/- 18 mm Hg,72 +/- 20 mm Hg:p = 0.005),而FRC剂量下的PaCO2之间无差异模式。低剂量时,PC模式下的PLV吸气流量曲线似乎变形最小,而VC模式下两种剂量下的PLV吸气流量曲线均呈锯齿形变形。在两种剂量下,PC模式下的PLV吸气流量实际时间均比VC模式下的短。总之,在缺乏表面活性剂的兔子中,与VC模式相比,PC模式下PLV期间的气体交换更好,尤其是在低全氟化碳剂量下。在相同的潮气量下,在低剂量和FRC剂量的全氟化碳下,PC似乎比VC更好地吹入全氟化碳。

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