0000000001103813

AUTHOR

D. Guenther

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Functional MR imaging of pulmonary ventilation using hyperpolarized noble gases.

2000

The current status of experimental and clinical applications for functional MR imaging of pulmonary ventilation using hyperpolarized noble gases are reviewed. 3-helium (3He) and 129-xenon (129Xe) can be hyperpolarized by optical pumping techniques such as spin exchange or metastability exchange in sufficient amounts. This process leads to an artificial, non-equilibrium increase of the density of excited nuclei which represents the source of the MR signal. Those hyperpolarized gases are administered mostly via inhalation, and will fill airways and airspaces allowing for ventilation imaging. Recent human studies concentrate on imaging the airways and airspaces with high spatial resolution. N…

Respiratory physiologyVentilation/perfusion ratioHeliumNuclear magnetic resonanceIsotopesmedicineVentilation-Perfusion RatioHumansRadiology Nuclear Medicine and imagingHyperpolarization (physics)Lungmedicine.diagnostic_testInhalationRadiological and Ultrasound Technologybusiness.industryPulmonary Diffusing CapacityNoble gasMagnetic resonance imagingGeneral MedicineMagnetic Resonance ImagingBreathingPulmonary Diffusing CapacityXenon IsotopesNuclear medicinebusinessPulmonary VentilationActa radiologica (Stockholm, Sweden : 1987)
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