Assessing the Pulmonary Vascular Responsiveness to Oxygen with Proton MRI
Ventilation-perfusion matching occurs passively and is also actively regulated through hypoxic pulmonary vasoconstriction (HPV). The extent of HPV activity in humans, particularly normal subjects is uncertain. Current evaluation of HPV assesses changes in ventilation-perfusion relationships/pulmonar...
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Veröffentlicht in: | Journal of applied physiology (1985) 2024-04, Vol.136 (4), p.853-863 |
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Sprache: | eng |
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Zusammenfassung: | Ventilation-perfusion matching occurs passively and is also actively regulated through hypoxic pulmonary vasoconstriction (HPV). The extent of HPV activity in humans, particularly normal subjects is uncertain. Current evaluation of HPV assesses changes in ventilation-perfusion relationships/pulmonary vascular resistance with hypoxia and are invasive, or unsuitable for patients because of safety concerns. We used a non-invasive imaging-based approach to quantify the pulmonary vascular response to oxygen as a metric of HPV by measuring perfusion changes between breathing 21% and 30%O
using arterial spin labeling (ASL) MRI. We hypothesized that the differences between 21% and 30%O
images reflecting HPV release would be 1) significantly greater than differences without F
O
changes (e.g.,21-21% and 30-30%O
) and 2) negatively associated with ventilation-perfusion mismatch. Perfusion was quantified in the right lung in normoxia (baseline), after 15min of 30%O
breathing (hyperoxia) and 15min normoxic recovery (recovery) in healthy subjects (7M,7F;Age=41.4±19.6y). Normalized, smoothed, and registered pairs of perfusion images were subtracted and the mean square difference (MSD) calculated. Separately, regional alveolar ventilation and perfusion were quantified from specific ventilation, proton density, and ASL imaging; the spatial variance of ventilation-perfusion (s
V̇
/Q̇) distributions were calculated. The O
-responsive MSD was reproducible (R
=0.94,P |
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ISSN: | 8750-7587 1522-1601 1522-1601 |
DOI: | 10.1152/japplphysiol.00747.2023 |