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首页> 外文期刊>Critical care medicine >Tidal recruitment assessed by electrical impedance tomography and computed tomography in a porcine model of lung injury*
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Tidal recruitment assessed by electrical impedance tomography and computed tomography in a porcine model of lung injury*

机译:通过电阻抗断层扫描和计算机断层扫描在猪肺损伤模型中评估潮汐募集*

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摘要

OBJECTIVES: To determine the validity of electrical impedance tomography to detect and quantify the amount of tidal recruitment caused by different positive end-expiratory pressure levels in a porcine acute lung injury model. DESIGN: Randomized, controlled, prospective experimental study. SETTING: Academic research laboratory. SUBJECTS: Twelve anesthetized and mechanically ventilated pigs. INTERVENTIONS: Acute lung injury was induced by central venous oleic acid injection and abdominal hypertension in seven animals. Five healthy pigs served as control group. Animals were ventilated with positive end-expiratory pressure of 0, 5, 10, 15, 20, and 25 cm H2O, respectively, in a randomized order. MEASUREMENTS AND MAIN RESULTS: At any positive end-expiratory pressure level, electrical impedance tomography was obtained during a slow inflation of 12 mL/kg of body weight. Regional-ventilation-delay indices quantifying the time until a lung region reaches a certain amount of impedance change were calculated for lung quadrants and for every single electrical impedance tomography pixel, respectively. Pixel-wise calculated regional-ventilation-delay indices were plotted in a color-coded regional-ventilation-delay map. Regional-ventilation-delay inhomogeneity that quantifies heterogeneity of ventilation time courses was evaluated by calculating the scatter of all pixel-wise calculated regional-ventilation-delay indices. End-expiratory and end-inspiratory computed tomography scans were performed at each positive end-expiratory pressure level to quantify tidal recruitment of the lung. Tidal recruitment showed a moderate inter-individual (r = .54; p < .05) and intra-individual linear correlation (r = .46 up to r = .73 and p < .05, respectively) with regional-ventilation-delay obtained from lung quadrants. Regional-ventilation-delay inhomogeneity was excellently correlated with tidal recruitment intra- (r = .90 up to r = .99 and p < .05, respectively) and inter-individually (r = .90; p < .001). CONCLUSIONS: Regional-ventilation-delay can be noninvasively measured by electrical impedance tomography during a slow inflation of 12 mL/kg of body weight and visualized using ventilation delay maps. Our experimental data suggest that the impedance tomography-based analysis of regional-ventilation-delay inhomogeneity provides a good estimate of the amount of tidal recruitment and may be useful to individualize ventilatory settings.
机译:目的:确定电阻抗断层扫描在猪急性肺损伤模型中检测和定量由不同的呼气末正压水平引起的潮气募集量的有效性。设计:随机,对照,前瞻性实验研究。地点:学术研究实验室。受试者:十二只麻醉和机械通风的猪。干预:七只动物的中心静脉油酸注射液和腹部高压诱发了急性肺损伤。五只健康的猪作为对照组。以随机顺序分别以0、5、10、15、20和25 cm H2O的呼气末正压使动物通气。测量和主要结果:在任何正的呼气末正压水平下,在缓慢充气至12 mL / kg体重时均获得了电阻抗断层扫描。分别针对肺象限和每个单个电阻抗断层扫描像素,计算了量化直到肺区域达到一定阻抗变化时间的区域通风延迟指数。在彩色编码的区域通风延迟图中绘制按像素计算的区域通风延迟指数。通过计算所有按像素计算的区域通风延迟指数的散布,评估量化通风时间过程异质性的区域通风延迟不均匀性。在每个呼气末正压水平下进行呼气末和呼气末计算机断层扫描,以量化肺的潮气募集。潮汐募集显示个体间中等(r = .54; p <.05)和个体内部线性相关(r = .46,直到r = .73和p <.05),区域通风延迟从肺象限获得。区域通风延迟的不均匀性与潮汐募集内部(r = .90,最高分别为r = .99和p <.05)和个体之间(r = .90; p <.001)密切相关。结论:在缓慢充气至12 mL / kg体重期间,可以通过电阻抗断层成像技术无创地测量区域通气延迟,并使用通气延迟图进行可视化。我们的实验数据表明,基于阻抗层析成像的区域通气延迟不均匀性分析可以很好地估算潮汐募集量,并且可能有助于个性化通气设置。

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