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使用模拟房水流动的体模装置对优化的飞行时间磁共振成像程序进行定量评估。

Quantitative evaluation of an optimized Time of Flight Magnetic Resonance Imaging procedure using a phantom setup to simulate aqueous humor flow.

作者信息

Wecker Thomas, van Oterendorp Christian, Reichardt Wilfried

机构信息

Eye Center, Medical Center - University of Freiburg, Faculty of Medicine, University of Freiburg, Germany.

Wecker Eye Center, Heilbronn, Germany.

出版信息

Data Brief. 2018 Mar 9;18:585-589. doi: 10.1016/j.dib.2018.03.018. eCollection 2018 Jun.

Abstract

Preclinical Magnetic Resonance Imaging at high field strength offers the great advantage of combining anatomical information and very high resolution of down to 25 µm in mice and even higher resolutions in ex vivo settings. The presented data is Time of Flight MR imaging data using a tube phantom and a given flow-rate to determine the lower limit of the flow rate that is detectable with an experimental set-up and a specifically optimized 2D TOF sequence. In this work we present data on a phantom study which shows the ability of Time of Flight MR Imaging to detect very low flow rates down to 25 µl/h at a velocity of 0.1 mm/s non-invasively in a phantom study.

摘要

高场强临床前磁共振成像具有将解剖信息与高分辨率相结合的巨大优势,在小鼠中分辨率可达25微米,在离体环境中分辨率更高。所呈现的数据是使用管道模型和给定流速的飞行时间磁共振成像数据,以确定实验装置和经过专门优化的二维飞行时间序列可检测到的流速下限。在这项工作中,我们展示了一项模型研究的数据,该研究表明飞行时间磁共振成像能够在模型研究中以0.1毫米/秒的速度无创检测低至25微升/小时的极低流速。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e839/5996222/d7005a44c761/gr1.jpg

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