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Quantitative imaging of alveolar recruitment with hyperpolarized gas MRI during mechanical ventilation

机译:机械通气期间超极化气体MRI对肺泡募集的定量成像

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摘要

The aim of this study was to assess the utility of 3He MRI to noninvasively probe the effects of positive end-expiratory pressure (PEEP) maneuvers on alveolar recruitment and atelectasis buildup in mechanically ventilated animals. Sprague-Dawley rats (n = 13) were anesthetized, intubated, and ventilated in the supine position (4He-to-O2 ratio: 4:1; tidal volume: 10 ml/kg, 60 breaths/min, and inspiration-to-expiration ratio: 1:2). Recruitment maneuvers consisted of either a stepwise increase of PEEP to 9 cmH2O and back to zero end-expiratory pressure or alternating between these two PEEP levels. Diffusion MRI was performed to image 3He apparent diffusion coefficient (ADC) maps in the middle coronal slices of lungs (n = 10). ADC was measured immediately before and after two recruitment maneuvers, which were separated from each other with a wait period (8–44 min). We detected a statistically significant decrease in mean ADC after each recruitment maneuver. The relative ADC change was −21.2 ± 4.1 % after the first maneuver and −9.7 ± 5.8 % after the second maneuver. A significant relative increase in mean ADC was observed over the wait period between the two recruitment maneuvers. The extent of this ADC buildup was time dependent, as it was significantly related to the duration of the wait period. The two postrecruitment ADC measurements were similar, suggesting that the lungs returned to the same state after the recruitment maneuvers were applied. No significant intrasubject differences in ADC were observed between the corresponding PEEP levels in two rats that underwent three repeat maneuvers. Airway pressure tracings were recorded in separate rats undergoing one PEEP maneuver (n = 3) and showed a significant relative difference in peak inspiratory pressure between pre- and poststates. These observations support the hypothesis of redistribution of alveolar gas due to recruitment of collapsed alveoli in presence of atelectasis, which was also supported by the decrease in peak inspiratory pressure after recruitment maneuvers.
机译:这项研究的目的是评估3He MRI在无创探查呼气末正压(PEEP)动作对机械通气动物肺泡募集和肺不张形成的影响中的实用性。将Sprague-Dawley大鼠(n = 13)在仰卧位麻醉,插管和通气(4He与O2的比例:4:1;潮气量:10 ml / kg,60呼吸/ min,吸气)。到期比率:1:2)。招募策略包括将PEEP逐步增加至9 cmH2O,然后恢复到呼气末压力为零,或者在这两个PEEP水平之间交替进行。进行了弥散MRI,以对肺中冠状切片(n = 10)中的3He表观弥散系数(ADC)图成像。在两次招募演习之前和之后立即测量ADC,这两个演习在等待期间(8-44分钟)彼此分开。在每次招募演习后,我们发现平均ADC的统计显着下降。第一次操作后,ADC的相对变化为-21.2±4.1%,第二次操作后,ADC的相对变化为-9.7±5.8%。在两次招募演习之间的等待期间,观察到平均ADC的显着相对增加。 ADC建立的程度与时间有关,因为它与等待时间的长短密切相关。两次招募后ADC的测量结果相似,表明在实施招募策略后,肺部恢复了相同的状态。在经历三次重复操作的两只大鼠中,相应的PEEP水平之间没有观察到ADC的显着受试者内差异。在经历一次PEEP动作(n = 3)的另一只大鼠中记录了气道压力描记,并显示了前状态和后状态之间峰值吸气压力的显着相对差异。这些观察结果支持了由于肺不张存在下塌陷的肺泡募集而引起的肺泡气体再分布的假说,这也受到募集演习后吸气峰值压力下降的支持。

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