4.5 Article

Fat-Suppression Techniques for 3-T MR Imaging of the Musculoskeletal System

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RADIOGRAPHICS
卷 34, 期 1, 页码 217-233

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RADIOLOGICAL SOC NORTH AMERICA
DOI: 10.1148/rg.341135130

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  1. NIAMS NIH HHS [K24 AR062068] Funding Source: Medline
  2. NIBIB NIH HHS [R01 EB002524] Funding Source: Medline

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Fat suppression is an important technique in musculoskeletal imaging to improve the visibility of bone-marrow lesions; evaluate fat in soft-tissue masses; optimize the contrast-to-noise ratio in magnetic resonance (MR) arthrography; better define lesions after administration of contrast material; and avoid chemical shift artifacts, primarily at 3-T MR imaging. High-field-strength (eg, 3-T) MR imaging has specific technical characteristics compared with lower-field-strength MR imaging that influence the use and outcome of various fat-suppression techniques. The most commonly used fat-suppression techniques for musculoskeletal 3-T MR imaging include chemical shift (spectral) selective (CHESS) fat saturation, inversion recovery pulse sequences (eg, short inversion time inversion recovery [STIR]), hybrid pulse sequences with spectral and inversion-recovery (eg, spectral adiabatic inversion recovery and spectral attenuated inversion recovery [SPAIR]), spatial-spectral pulse sequences (ie, water excitation), and the Dixon techniques. Understanding the different fat-suppression options allows radiologists to adopt the most appropriate technique for their clinical practice. (C)RSNA, 2014

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