Related Experiment Video
Updated: May 23, 2026

Phase-Resolved Functional Lung MRI for Pulmonary Ventilation and Perfusion (V/Q) Assessment
Published on: August 9, 2024
MRI of the lung: state of the art
Mark Wielpütz1, Hans-Ulrich Kauczor
1Department of Diagnostic and Interventional Radiology, Translational Lung Research Center Heidelberg, Germany.
Abstract:
Magnetic resonance imaging (MRI) of the lung is technically challenging due to the low proton density and fast signal decay of the lung parenchyma itself. Additional challenges consist of tissue loss, hyperinflation, and hypoxic hypoperfusion, e.g., in emphysema, a so-called "minus-pathology". However, pathological changes resulting in an increase of tissue ("plus-pathology"), such as atelectases, nodules, infiltrates, mucus, or pleural effusion, are easily depicted with high diagnostic accuracy. Although MRI is inferior or at best equal to multi-detector computed tomography (MDCT) for the detection of subtle morphological features, MRI now offers an increasing spectrum of functional imaging techniques such as perfusion assessment and measurement of ventilation and respiratory mechanics that are superior to what is possible with MDCT. Without putting patients at risk with ionizing radiation, repeated examinations allow for the evaluation of the course of lung disease and monitoring of the therapeutic response through quantitative imaging, providing a level of functional detail that cannot be obtained by any other single imaging modality. As such, MRI will likely be used for clinical applications beyond morphological imaging for many lung diseases. In this article, we review the technical aspects and protocol suggestions for chest MRI and discuss the role of MRI in the evaluation of nodules and masses, airway disease, respiratory mechanics, ventilation, perfusion and hemodynamics, and pulmonary vasculature.
Insights
Magnetic resonance imaging (MRI) of the lung offers advanced functional insights without radiation. While challenging for subtle details, MRI excels in evaluating lung diseases and treatment response through quantitative imaging.
Area of Science:
- Radiology
- Medical Imaging
- Pulmonology
Background:
- Lung MRI faces challenges due to low proton density and signal decay.
- Conditions like emphysema present 'minus-pathology', while atelectasis and nodules show 'plus-pathology'.
Purpose of the Study:
- To review technical aspects and protocols for chest MRI.
- To discuss the role of MRI in evaluating various lung pathologies and functions.
Main Methods:
- Exploration of technical challenges and protocol suggestions for lung MRI.
- Review of MRI's capabilities in morphological and functional imaging of the lungs.
Main Results:
- MRI can accurately depict 'plus-pathology' but is comparable to MDCT for subtle features.
- Functional MRI techniques offer superior assessment of perfusion, ventilation, and respiratory mechanics.
- Radiation-free, quantitative imaging allows disease monitoring and therapeutic response evaluation.
Conclusions:
- Lung MRI is valuable for functional assessment and disease monitoring, complementing morphological imaging.
- MRI's advanced functional capabilities position it for expanded clinical applications in lung disease.
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