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使用梯度脉冲和相位差技术通过核磁共振成像测量流量。

Measurement of flow with NMR imaging using a gradient pulse and phase difference technique.

作者信息

Bryant D J, Payne J A, Firmin D N, Longmore D B

出版信息

J Comput Assist Tomogr. 1984 Aug;8(4):588-93. doi: 10.1097/00004728-198408000-00002.

Abstract

A method for determining flow by nuclear magnetic resonance (NMR) imaging is described. A conventional spin-echo imaging sequence is employed with the addition of balanced gradient pulses on either side of the pi radiofrequency pulse. Flow velocities in the direction orthogonal to the image plane are determined by the phase shifts in the NMR image. Experimental validation of the technique in vitro was achieved with a phantom designed to give a continuous flow of water. The flow rate measured by NMR agreed well with the volume flow rate through the phantom. In vivo, NMR flow measurements on the carotid and femoral arteries of two volunteers were compared with Doppler ultrasound results. Velocity measurements were in general agreement. Rapid changes in flow are difficult to follow with the NMR method unless particular care is taken in gradient profile design. The technique can readily be used in existing NMR imaging machines and may have a useful clinical role.

摘要

描述了一种通过核磁共振(NMR)成像确定血流的方法。采用传统的自旋回波成像序列,并在π射频脉冲两侧添加平衡梯度脉冲。垂直于图像平面方向的血流速度由NMR图像中的相移确定。通过设计用于产生连续水流的体模在体外对该技术进行了实验验证。NMR测量的流速与通过体模的体积流速吻合良好。在体内,将两名志愿者颈动脉和股动脉的NMR血流测量结果与多普勒超声结果进行了比较。速度测量总体上一致。除非在梯度轮廓设计中特别小心,否则很难用NMR方法跟踪血流的快速变化。该技术可轻松应用于现有的NMR成像设备,可能具有重要的临床作用。

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