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用于三维容积选择多层核磁共振成像的相位扰乱射频激励

Phase-scrambled RF excitation for 3D volume-selective multislice NMR imaging.

作者信息

Oh C H, Hilal S K, Wu E X, Cho Z H

机构信息

Department of Radiology, Columbia University, New York, New York 10032.

出版信息

Magn Reson Med. 1992 Dec;28(2):290-9. doi: 10.1002/mrm.1910280210.

Abstract

An RF excitation technique with which one can improve the effective dynamic range of the receiver and reduce the interference between slices for 3D volume-selective multislice MRI is described. The basic idea of the technique is to use phase scrambling in conjunction with slice encoding through the use of RF pulses. The spins in each slice are encoded by RF pulses which have the scrambled as well as slice-encoded phase components along the slice-selection direction. The scrambled, or randomly distributed, phase reduces the peak signal intensity, thereby reducing the dynamic range of the signal. Since the proposed technique utilizes RF slice encoding together with phase scrambling, interslice image interference is greatly reduced and the dynamic range is improved. In addition, the method has several advantages such as a reduction in the power requirement for the RF pulses and the elimination of the necessity for hardware such as nonlinear gradient coils.

摘要

描述了一种射频激励技术,利用该技术可提高接收器的有效动态范围,并减少三维容积选择多层磁共振成像(MRI)中各层之间的干扰。该技术的基本思想是通过使用射频脉冲,将相位加扰与层面编码相结合。沿着层面选择方向,每个层面中的自旋由具有加扰相位分量以及层面编码相位分量的射频脉冲进行编码。加扰的或随机分布的相位降低了峰值信号强度,从而减小了信号的动态范围。由于所提出的技术将射频层面编码与相位加扰结合使用,因此层间图像干扰大大减少,动态范围得到改善。此外,该方法具有几个优点,例如降低了射频脉冲的功率需求,并且无需诸如非线性梯度线圈之类的硬件。

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