2. The Clinical Application of Intracranial Black-blood Imaging Using a Motion-sensitive-gradient Sequence
Author:
Affiliation:
1. Department of Radiology, Toranomon Hospital
Publisher
Japanese Society of Radiological Technology
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/jjrt/77/8/77_2021_JSRT_77.8.859/_pdf
Reference27 articles.
1. 1) Mandell DM, Mossa-Basha M, Qiao Y, et al. Intracranial vessel wall MRI: principles and expert consensus recommendations of the American Society of Neuroradiology. AJNR Am J Neuroradiol 2017; 38(2): 218-229.
2. 2) Dieleman N, van der Kolk AG, Zwanenburg JJ, et al. Imaging intracranial vessel wall pathology with magnetic resonance imaging: current prospects and future directions. Circulation 2014; 130(2): 192-201.
3. 3) Yoshida K, Endo H, Sadamasa N, et al. Evaluation of carotid artery atherosclerotic plaque distribution by using long-axis high-resolution black-blood magnetic resonance imaging. J Neurosurg 2008; 109(6): 1042-1048.
4. 4) Wang J, Yarnykh VL, Hatsukami T, et al. Improved suppression of plaque-mimicking artifacts in black-blood carotid atherosclerosis imaging using a multislice motion-sensitized driven-equilibrium (MSDE) turbo spin-echo (TSE) sequence. Magn Reson Med 2007; 58(5): 973-981.
5. 5) Wang J, Yarnykh VL, Yuan C. Enhanced image quality in black-blood MRI using the improved motion-sensitized driven-equilibrium (iMSDE) sequence. J Magn Reson Imaging 2010; 31(5): 1256-1263.
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