Pseudo-random Trajectory Scanning Suppresses Motion Artifacts on Gadoxetic Acid-enhanced Hepatobiliary-phase Magnetic Resonance Images
Author:
Affiliation:
1. Diagnostic Radiology, Hiroshima University
2. Healthcare Business Unit, Hitachi, Ltd.
3. Department of Radiology, Hiroshima University Hospital
Publisher
Japanese Society for Magnetic Resonance in Medicine
Subject
Radiology, Nuclear Medicine and imaging
Link
https://www.jstage.jst.go.jp/article/mrms/19/1/19_mp.2018-0174/_pdf
Reference17 articles.
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2. 2. Guo J, Seo Y, Ren S, et al. Diagnostic performance of contrast-enhanced multidetector computed tomography and gadoxetic acid disodium-enhanced magnetic resonance imaging in detecting hepatocellular carcinoma: direct comparison and a meta-analysis. Abdom Radiol (NY) 2016; 41:1960–1972.
3. 3. Ye F, Liu J, Ouyang H. Gadolinium ethoxybenzyl diethylenetriamine pentaacetic acid (Gd-EOB-DTPA)-enhanced magnetic resonance imaging and multidetector-row computed tomography for the diagnosis of hepatocellular carcinoma: a systematic review and meta-analysis. Medicine (Baltimore) 2015; 94:e1157.
4. 4. Muhi A, Ichikawa T, Motosugi U, et al. Diagnosis of colorectal hepatic metastases: comparison of contrast-enhanced CT, contrast-enhanced US, superparamagnetic iron oxide-enhanced MRI, and gadoxetic acid-enhanced MRI. J Magn Reson Imaging 2011; 34:326–335.
5. 5. Inoue Y, Hata H, Nakajima A, Iwadate Y, Ogasawara G, Matsunaga K. Optimal techniques for magnetic resonance imaging of the liver using a respiratory navigator-gated three-dimensional spoiled gradient-recalled echo sequence. Magn Reson Imaging 2014; 32:975–980.
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