Hyperpolarised xenon magnetic resonance spectroscopy for the longitudinal assessment of changes in gas diffusion in IPF

Author:

Weatherley Nicholas DORCID,Stewart Neil J,Chan Ho-Fung,Austin Matthew,Smith Laurie JORCID,Collier Guilhem,Rao Madhwesha,Marshall Helen,Norquay Graham,Renshaw Stephen A,Bianchi Stephen Mark,Wild Jim M

Abstract

Prognosticating idiopathic pulmonary fibrosis (IPF) is challenging, in part due to a lack of sensitive biomarkers. A recent article in Thorax described how hyperpolarised xenon magnetic resonance spectroscopy may quantify regional gas exchange in IPF lungs. In a population of patients with IPF, we find that the xenon signal from red blood cells diminishes relative to the tissue/plasma signal over a 12-month time period, even when the diffusion factor for carbon monoxide is static over the same time period. We conclude that hyperpolarised 129Xe MR spectroscopy may be sensitive to short-term changes in interstitial gas diffusion in IPF.

Funder

National Institute for Health Research

Publisher

BMJ

Subject

Pulmonary and Respiratory Medicine

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