Effects of the prone position on gas exchange and ventilatory mechanics and their correlations with mechanical power in burn patients with ARDS

C. Franck, Ehab Daoud
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引用次数: 0

Abstract

Background Prone position has many documented benefits on severe ARDS patients especially on mortality. The benefits in ARDS secondary to severe burns have not been fully documented. Aim To quantify the effects of prone positioning on gas exchange, ventilatory mechanics and their correlations with mechanical power in burn subjects with ARDS. Methods Cross-sectional observational analytical study that took place between January 2023 and October 2023 in Burns ICU in Brazil on subjects with moderate to severe ARDS ventilated with the volume controlled mode. Data were collected in the first prone positioning lasting 24 hours in the first 30 minutes after changing position and 30 minutes before returning to the supine position. The parameters of the components of mechanical ventilation and mechanical power calculated by the Gatinoni’s formula (respiratory rate, tidal volume, driving pressure, PEEP, peak and plateau pressures) were collected to evaluate ventilatory mechanics, and the values of the FiO2, PaO2, PaO2/FiO2 ratio, SpO2, EtCO2, PaCO2, PaCO2 - EtCO2 gradient to assess gas exchange. Mean, minimum and maximum values, 1st and 3rd quartiles, median and standard deviation are calculated. To compare the results obtained at the two evaluation moments, the student’s t-test for dependent samples and non-parametric Wilcoxon tests were considered. To evaluate the association between the variation between the two moments of each variable, and the variation in mechanical power, the Pearson correlation coefficient was calculated. The normality of the variables was assessed using the Jarque-Béra test. P values <0.05 indicated statistical significance. Results Except for EtCO2 (P 0.939) and PaCO2 (P 0.391) all other variables presented statistical significance in relation to their variations with reduction in FiO2 (P <0.001), reduction in PaCO2 - EtCO2 gradient (P 0.011), and increases in PaO2 (P 0.008), PaO2/FiO2 (P <0.001), SpO2 (P 0.004). In the analysis of variables, reduction in respiratory rate (P 0.142), VT (P 0.385), peak pressure (P 0.085), plateau pressure (P 0.009), PEEP (P 0.032), driving pressure (P 0.083), elastance (P 0.180), mechanical power (P < 0.001) with increase static compliance (P 0.414) and resistance pressure (P 0.443). Among the ventilatory mechanics variables, only the reductions in plateau pressure, PEEP, and mechanical power showed statistical significance. Conclusion The prone position in burns induced ARDS improved oxygenation and reduced arterial partial pressure to end tidal CO2 gradient, furthermore, reducing plateau pressures and PEEP, which in turn reduced mechanical power. Keywords: mechanical power, burns, ARDS, prone position
俯卧位对患有 ARDS 的烧伤患者气体交换和通气力学的影响及其与机械力的相关性
背景 俯卧位对重症 ARDS 患者有许多好处,尤其是降低死亡率。但对严重烧伤继发的 ARDS 患者的益处尚未得到充分证实。目的 量化俯卧位对 ARDS 烧伤患者气体交换、通气力学的影响及其与机械力的相关性。方法 2023 年 1 月至 2023 年 10 月期间,在巴西烧伤重症监护病房对采用容量控制模式通气的中重度 ARDS 患者进行横断面观察分析研究。数据收集于首次俯卧位持续 24 小时、改变体位后的前 30 分钟和恢复仰卧位前的 30 分钟。收集根据加蒂诺尼公式(呼吸频率、潮气量、驱动压力、PEEP、峰值压力和高原压力)计算的机械通气和机械动力的组成参数,以评估通气力学;收集 FiO2、PaO2、PaO2/FiO2 比值、SpO2、EtCO2、PaCO2、PaCO2 - EtCO2 梯度值,以评估气体交换。计算平均值、最小值和最大值、第一和第三四分位数、中位数和标准偏差。为了比较在两个评估时刻获得的结果,考虑了因果样本的学生 t 检验和非参数 Wilcoxon 检验。为了评估每个变量两个时刻之间的变化与机械功率变化之间的关联,计算了皮尔逊相关系数。变量的正态性采用 Jarque-Béra 检验进行评估。P 值小于 0.05 表示有统计学意义。结果 除 EtCO2(P 0.939)和 PaCO2(P 0.391)外,所有其他变量的变化均有统计学意义,FiO2 下降(P <0.001),PaCO2 - EtCO2 梯度下降(P 0.011),PaO2 上升(P 0.008),PaO2/FiO2 上升(P <0.001),SpO2 上升(P 0.004)。在变量分析中,随着静顺应性(P 0.414)和阻力压力(P 0.443)的增加,呼吸频率(P 0.142)、VT(P 0.385)、峰值压力(P 0.085)、高原压力(P 0.009)、PEEP(P 0.032)、驱动压力(P 0.083)、弹性(P 0.180)、机械功率(P < 0.001)降低。在通气力学变量中,只有高原压、PEEP 和机械力的降低具有统计学意义。结论 在烧伤诱导的 ARDS 患者中,俯卧位可改善氧合,降低动脉分压与潮气末二氧化碳梯度,进一步降低高原压和 PEEP,进而降低机械力。关键词:机械力、烧伤、ARDS、俯卧位
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