4.5 Article

Airway closure is the predominant physiological mechanism of low ventilation seen on hyperpolarized helium-3 MRI lung scans

期刊

JOURNAL OF APPLIED PHYSIOLOGY
卷 130, 期 3, 页码 781-791

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/japplphysiol.00163.2020

关键词

asthma; forced oscillation; hyperpolarized helium-3 MRI; multiple breath washout; ventilation

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The study utilized He-3 MRI to investigate lung function in asthma patients and found that the areas of low-ventilated lung in asthma patients were primarily due to airway closure. The marker of airway closure Xrs (6 Hz) was a significant predictor of low-ventilated lung volume.
Hyperpolarized helium-3 MRI (He-3 MRI) provides detailed visualization of low- (hypo- and non-) ventilated lungs. Physiological measures of gas mixing may be assessed by multiple breath nitrogen washout (MBNW) and of airway closure by a forced oscillation technique (FOT). We hypothesize that in patients with asthma, areas of low-ventilated lung on He-3 MRI are the result of airway closure. Ten control subjects, ten asthma subjects with normal spirometry (non-obstructed), and ten asthmatic subjects with reduced baseline lung function (obstructed) attended two testing sessions. On visit one, baseline plethysmography was performed followed by spirometry, MBNW, and FOT assessment pre and post methacholine challenge. On visit two, He-3 MRI scans were conducted pre and post methacholine challenge. Post methacholine the volume of low-ventilated lung increased from 8.3% to 13.8% in the non-obstructed group (P = 0.012) and from 13.0% to 23.1% in the obstructed group (P = 0.001). For all subjects, the volume of low ventilation from He-3 MRI correlated with a marker of airway closure in obstructive subjects, Xrs (6 Hz) and the marker of ventilation heterogeneity Scond with r(2) values of 0.61 (P < 0.001) and 0.56 (P < 0.001), respectively. The change in Xrs (6 Hz) correlated well (r(2) = 0.45, p < 0.001), whereas the change in Scond was largely independent of the change in low ventilation volume (r(2) = 0.13, P < 0.01). The only significant predictor of low ventilation volume from the multi-variate analysis was Xrs (6 Hz). This is consistent with the concept that regions of poor or absent ventilation seen on He-3 MRI are primarily the result of airway closure. NEW & NOTEWORTHY This study introduces a novel technique of generating high-resolution D-3 ventilation maps from hyperpolarized helium-3 MRI. It is the first study to demonstrate that regions of poor or absent ventilation seen on He-3 MRI are primarily the result of airway closure.

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