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使用磁共振成像技术对狭窄管模型中的流速分布进行研究。

Velocity profiles in stenosed tube models using magnetic resonance imaging.

作者信息

Rittgers S E, Fei D Y, Kraft K A, Fatouros P P, Kishore P R

机构信息

Biomedical Engineering Program, Medical College of Virginia, Virginia Commonwealth University, Richmond 23298-0694.

出版信息

J Biomech Eng. 1988 Aug;110(3):180-4. doi: 10.1115/1.3108428.

Abstract

A time-of-flight MRI velocity measurement technique is evaluated against corresponding LDV measurements in a constriction tube model over a range of physiologic flow conditions. Results from this study show that MR displacement images can: 1) be obtained within both laminar and turbulent jets (maximum stenotic Re approximately equal to 4,200), 2) measure mean jet velocities up to 172 cm/s, and, 3) detect low forward and reverse stenosis (0 less than or equal to L/D less than or equal to 2). Regions between the jet termination point and re-establishment of laminar flow (Re greater than or equal to 1500, greater than or equal to 1000, and greater than or equal to 110 downstream of 40, 60, and 80 percent stenosis, respectively) cannot presently be detected by this technique.

摘要

在一系列生理流动条件下,针对收缩管模型中的相应激光多普勒测速仪(LDV)测量,对飞行时间磁共振成像速度测量技术进行了评估。该研究结果表明,磁共振位移图像可以:1)在层流和湍流射流中获取(最大狭窄处雷诺数约等于4200),2)测量高达172厘米/秒的平均射流速度,以及3)检测低正向和反向狭窄(0≤L/D≤2)。目前,该技术无法检测到射流终点与层流重新建立之间的区域(雷诺数分别在40%、60%和80%狭窄下游1500以上、1000以上和110以上)。

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