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肺泡复张手法对改善用氧气或氦氧混合气体通气的麻醉马匹气体交换和肺力学的效果。

Efficacy of an alveolar recruitment maneuver for improving gas exchange and pulmonary mechanics in anesthetized horses ventilated with oxygen or a helium-oxygen mixture.

作者信息

Hopster Klaus, Duffee Lauren R, Hopster-Iversen Charlotte C S, Driessen Bernd

出版信息

Am J Vet Res. 2018 Oct;79(10):1021-1027. doi: 10.2460/ajvr.79.10.1021.

DOI:10.2460/ajvr.79.10.1021
PMID:30256141
Abstract

OBJECTIVE To evaluate efficacy of an alveolar recruitment maneuver (ARM) with positive end-expiratory pressures (PEEPs) in anesthetized horses ventilated with oxygen or heliox (70% helium and 30% oxygen). ANIMALS 6 healthy adult horses. PROCEDURES In a randomized crossover study, horses were anesthetized and positioned in dorsal recumbency. Volume-controlled ventilation was performed with heliox or oxygen (fraction of inspired oxygen [Fio] > 90%). Sixty minutes after mechanical ventilation commenced, an ARM with PEEP (0 to 30 cm HO in steps of 5 cm HO every 5 minutes, followed by incremental steps back to 0 cm HO) was performed. Peak inspiratory pressure, dynamic lung compliance (C), and Pao were measured during each PEEP. Indices of pulmonary oxygen exchange and alveolar dead space were calculated. Variables were compared with baseline values (PEEP, 0 cm HO) and between ventilation gases by use of repeated-measures ANOVAs. RESULTS For both ventilation gases, ARM significantly increased pulmonary oxygen exchange indices and C. Mean ± SD C (506 ± 35 mL/cm HO) and Pao-to-Fio ratio (439 ± 36) were significantly higher and alveolar-arterial difference in Pao (38 ± 11 mm Hg) was significantly lower for heliox, compared with values for oxygen (357 ± 50 mL/cm HO, 380 ± 92, and 266 ± 88 mm Hg, respectively). CONCLUSIONS AND CLINICAL RELEVANCE An ARM in isoflurane-anesthetized horses ventilated with heliox significantly improved pulmonary oxygen exchange and respiratory mechanics by decreasing resistive properties of the respiratory system and reducing turbulent gas flow in small airways.

摘要

目的 评估在使用氧气或氦氧混合气(70%氦气和30%氧气)通气的麻醉马匹中,采用呼气末正压(PEEP)的肺泡复张手法(ARM)的效果。动物 6匹健康成年马。方法 在一项随机交叉研究中,将马匹麻醉并置于仰卧位。使用氦氧混合气或氧气进行容量控制通气(吸入氧分数[Fio]>90%)。机械通气开始60分钟后,采用带有PEEP的ARM(从0至30 cm H₂O,每5分钟递增5 cm H₂O,然后再逐步递减至0 cm H₂O)。在每个PEEP水平测量吸气峰压、动态肺顺应性(C)和动脉血氧分压(Pao)。计算肺氧交换指标和肺泡死腔。通过重复测量方差分析将变量与基线值(PEEP,0 cm H₂O)进行比较,并在两种通气气体之间进行比较。结果 对于两种通气气体,ARM均显著提高了肺氧交换指标和C。与氧气通气时的值(分别为357±50 mL/cm H₂O、380±92和266±88 mmHg)相比,氦氧混合气通气时的平均±标准差C(506±35 mL/cm H₂O)和Pao与Fio比值(439±36)显著更高,而Pao的肺泡 - 动脉差值(38±11 mmHg)显著更低。结论及临床意义 在使用异氟烷麻醉并采用氦氧混合气通气的马匹中,ARM通过降低呼吸系统的阻力特性和减少小气道中的湍流气体流动,显著改善了肺氧交换和呼吸力学。

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