首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Mapping the velocity vector onto the spin vector: two-dimensional velocity-selective spin excitation for MR flow imaging.
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Mapping the velocity vector onto the spin vector: two-dimensional velocity-selective spin excitation for MR flow imaging.

机译:将速度向量映射到自旋向量上:用于MR流成像的二维速度选择性自旋激发。

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摘要

This article presents a two-dimensional velocity-selective spin excitation (2D-VSP) method that enables quantitative imaging of motion in two directions in a single scan, without the need for image subtraction or combination. It is based on the idea of mapping a 2D velocity vector directly onto the transverse magnetization vector, such that the signal intensity reflects the speed of motion, while the signal phase represents the direction of motion. Experimental demonstration is presented in conjunction with an analysis of the accuracy of this method. VSP methods are often limited by inconsistent static signal suppression under variable shim and RF conditions. By using adiabatic RF pulses in a 2D-VSP composite that possesses time-reversal symmetry, consistent background suppression of 30-fold or higher was demonstrated over experimental conditions of +/-200 Hz off-resonance and 30% RF field variation.
机译:本文提出了一种二维速度选择性自旋激发(2D-VSP)方法,该方法能够在一次扫描中对两个方向上的运动进行定量成像,而无需进行图像减法或组合。它基于将2D速度向量直接映射到横向磁化向量的想法,这样信号强度反映了运动速度,而信号相位则代表了运动方向。结合该方法的准确性分析进行了实验演示。在可变垫片和RF条件下,VSP方法通常受到不一致的静态信号抑制的限制。通过在具有时间反转对称性的2D-VSP复合材料中使用绝热RF脉冲,在+/- 200 Hz失谐和30%RF场变化的实验条件下证明了30倍或更高的稳定背景抑制。

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