Magnetic Resonance Imaging of the Musculoskeletal System at 7T: Morphological Imaging and Beyond.

Vladimir Juras, Vladimir Mlynarik, Pavol Szomolanyi, Ladislav Valkovič, Siegfried Trattnig

Journal: Topics in magnetic resonance imaging : TMRI 2019;28(3):125-135

PMID: 30951006

Abstract

In 2017, a whole-body 7T magnetic resonance imaging (MRI) device was given regulatory approval for clinical use in both the EU and United States for neuro and musculoskeletal applications. As 7 Tesla allows for higher signal-to-noise , which results in higher resolution images than those obtained on lower-field-strength scanners, it has attracted considerable attention from the musculoskeletal field, as evidenced by the increasing number of publications in the last decade. Besides morphological imaging, the quantitative MR methods, such as T2, T2*, T1ρ mapping, sodium imaging, chemical-exchange saturation transfer, and spectroscopy, substantially benefit from ultrahigh field scanning. In this review, we provide technical considerations for the individual techniques and an overview of (mostly) clinical applications for the assessment of cartilage, tendon, meniscus, and muscle. The first part of the review is dedicated to morphological applications at 7T, and the second part describes the most recent developments in quantitative MRI at 7T.

Address: High-field MR Center, Department of Biomedical Imaging and Image-guided Therapy, Medical University of Vienna, Vienna, Austria.; Department of Imaging Methods, Institute of Measurements Science, Slovak Academy of Sciences, Bratislava, Slovakia.; Karl Landsteiner Society, St. Pölten, Austria.; Oxford Centre for Clinical Magnetic Resonance Research, BHF Centre of Research Excellence, University of Oxford, Oxford, UK.; Austrian Cluster for Tissue Regeneration, Vienna, Austria.; Christian Doppler Laboratory for Clinical Molecular MR Imaging, Vienna, Austria.
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