Published May 2019 | Version v1
Journal article

Magnetic resonance imaging of the time course of hyperpolarized 129Xe gas exchange in the human lungs and heart

  • 1. Oxford University (United Kingdom). Dept. of Radiology
  • 2. Oxford University (United Kingdom). Dept. of Oncology
  • 3. University of Oxford Centre for Clinical Magnetic Resonance Research (United Kingdom). Div. of Cardiovascular Medicine

Description

To perform magnetic resonance imaging (MRI), human lung imaging, and quantification of the gas-transfer dynamics of hyperpolarized xenon-129 (HPX) from the alveoli into the blood plasma. HPX MRI with iterative decomposition of water and fat with echo asymmetry and least-square estimation (IDEAL) approach were used with multi-interleaved spiral k-space sampling to obtain HPX gas and dissolved phase images. IDEAL time-series images were then obtained from ten subjects including six normal subjects and four patients with pulmonary emphysema to test the feasibility of the proposed technique for capturing xenon-129 gas-transfer dynamics (XGTD). The dynamics of xenon gas diffusion over the entire lung was also investigated by measuring the signal intensity variations between three regions of interest, including the left and right lungs and the heart using Welch's t test. The technique enabled the acquisition of HPX gas and dissolved phase compartment images in a single breath-hold interval of 8 s. The y-intersect of the XGTD curves were also found to be statistically lower in the patients with lung emphysema than in the healthy group (p < 0.05). This time-series IDEAL technique enables the visualization and quantification of inhaled xenon from the alveoli to the left ventricle with a clinical gradient strength magnet during a single breath-hold, in healthy and diseased lungs.

Availability note (English)

Available from: http://dx.doi.org/10.1007/s00330-018-5853-9

Additional details

Identifiers

Publishing Information

Journal Title
European Radiology
Journal Volume
29
Journal Issue
5
Journal Page Range
p. 2283-2292
ISSN
0938-7994
CODEN
EURAE3