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Related Experiment Video

Updated: Sep 28, 2025

Multi-modal Pulmonary Imaging: Using Complementary Information from CT and Hyperpolarized 129Xe MRI to Evaluate Lung Structure-Function
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Examining lung microstructure using 19 F MR diffusion imaging in COPD patients.

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  • 1Institute for Diagnostic and Interventional Radiology, Hannover Medical School, Hannover, Germany.

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Summary

Fluorine-19 (¹⁹F) diffusion MRI is a feasible and repeatable method for assessing lung microstructure. This technique accurately measures the lung surface-to-volume ratio, correlating well with established methods in both healthy individuals and COPD patients.

Keywords:
19Fdiffusionpulmonary MRIsurface-to-volume ratio

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Area of Science:

  • Pulmonary Medicine
  • Medical Imaging
  • Biophysics

Background:

  • Assessing lung microstructure is crucial for understanding pulmonary diseases.
  • Current methods like hyperpolarized ¹²⁹Xe MRI and lung function tests provide valuable but distinct insights.
  • A novel, repeatable imaging technique for lung microstructure could enhance diagnostic capabilities.

Purpose of the Study:

  • To evaluate the time-dependent diffusion of inhaled Fluorine-19 (¹⁹F) gas in human lungs.
  • To determine the pulmonary surface-to-volume ratio (S/V) using ¹⁹F diffusion MRI.
  • To compare these findings with hyperpolarized ¹²⁹Xe diffusion MRI and standard lung function tests in healthy volunteers and COPD patients.

Main Methods:

  • Utilized multiple gradient-echo sequences with trapezoidal gradient pulses to measure ¹⁹F gas diffusion in the short-time regime.
  • Calculated pulmonary S/V using a first-order approximation of time-dependent diffusion.
  • Assessed repeatability of measurements and correlation with ¹²⁹Xe MRI and spirometry in 20 healthy volunteers and 22 COPD patients.

Main Results:

  • ¹⁹F diffusion MRI revealed a significantly decreased S/V in COPD patients (median 126 cm⁻¹) compared to healthy volunteers (median 164 cm⁻¹; p < 0.0001).
  • Measurements demonstrated good repeatability within 7 days for both healthy (CV 4.3%) and COPD (CV 6.7%) subjects.
  • Strong linear correlations were observed between ¹⁹F-derived S/V and both ¹²⁹Xe-derived S/V (r=0.85; p=0.001) and forced expiratory volume in 1 second (r=0.68; p < 0.0001).

Conclusions:

  • Time-dependent diffusion measurement of inhaled ¹⁹F gas is a feasible and repeatable method for examining lung microstructure.
  • This ¹⁹F diffusion MRI technique provides quantitative insights into lung S/V.
  • The findings correlate well with established diagnostic measurements, suggesting potential for clinical application in pulmonary disease assessment.