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一种用于改善磁共振成像中选择性激发的多脉冲序列。

A multiple-pulse sequence for improved selective excitation in magnetic resonance imaging.

作者信息

Nishimura D G

出版信息

Med Phys. 1985 Jul-Aug;12(4):413-8. doi: 10.1118/1.595702.

Abstract

A new framework for selective excitation that offers simpler design and better performance than conventional excitation methods is introduced. The guidelines for choosing the appropriate radiofrequency (rf) pulse envelope in a conventional selective excitation sequence often rely on Fourier analysis, leading to less than desirable results. Although providing useful insight, Fourier analysis of the rf pulse envelope determines the resultant slice shape accurately only for small flip-angle excitations, and not for larger flip-angle excitations owing to the generally nonlinear behavior of the spin system. In the new excitation framework, additional excitation pulses (typically one) are applied in sequence with the conventional pulse to improve the performance (in phase characteristics and slice definition) over that achieved by the conventional pulse alone. Given a desired spatial spin distribution and an associated rf pulse (e.g., Fourier transform pairs), the Bloch equation is solved backwards to yield the starting distribution required for the conventional pulse to give exactly the desired output. If this residual distribution is a small flip angle away from the actual starting distribution, then Fourier analysis of the residual distribution leads to the necessary "setup" pulse. A gradient of opposite polarity during the setup obviates a refocusing interval after the setup pulse. Computer simulations have verified the efficacy of the multiple-pulse excitation sequence for both 90 degrees and 180 degrees excitations.

摘要

本文介绍了一种用于选择性激发的新框架,该框架比传统激发方法具有更简单的设计和更好的性能。在传统选择性激发序列中选择合适射频(rf)脉冲包络的指导原则通常依赖于傅里叶分析,导致结果不尽人意。尽管傅里叶分析对rf脉冲包络提供了有用的见解,但它仅在小翻转角激发时才能准确确定所得切片形状,而对于大翻转角激发则不行,这是由于自旋系统通常具有非线性行为。在新的激发框架中,额外的激发脉冲(通常为一个)与传统脉冲按顺序施加,以改善(相位特性和切片定义方面的)性能,优于单独使用传统脉冲所达到的性能。给定所需的空间自旋分布和相关的rf脉冲(例如,傅里叶变换对),反向求解布洛赫方程以得出传统脉冲给出精确所需输出所需的起始分布。如果该残余分布与实际起始分布相差一个小翻转角,则对残余分布进行傅里叶分析可得出必要的“设置”脉冲。设置期间相反极性的梯度消除了设置脉冲后的重聚焦间隔。计算机模拟已验证了多脉冲激发序列对90度和180度激发的有效性。

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