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使用绝热方波实现回波链(SWEET)激发的对B1不敏感的快速自旋回波。

B1-insensitive fast spin echo using adiabatic square wave enabling of the echo train (SWEET) excitation.

作者信息

Madhuranthakam Ananth J, Busse Reed F, Brittain Jean H, Rofsky Neil M, Alsop David C

机构信息

Global MR Applied Science Lab, GE Healthcare, Boston, Massachusetts 02215, USA.

出版信息

Magn Reson Med. 2008 Jun;59(6):1386-93. doi: 10.1002/mrm.21630.

DOI:10.1002/mrm.21630
PMID:18506787
Abstract

Abdominal images at 3T acquired with fast spin echo (FSE) sequences often exhibit signal voids due to RF transmit field inhomogeneities. Theory suggests, however, that the repeated refocusing pulses of FSE are capable of maintaining signal even at reduced RF amplitudes if the magnetization is suitably prepared. Here we propose a modified excitation strategy for FSE that is more robust to transmit field inhomogeneities than conventional FSE. The new excitation approach replaces the standard 90 degrees excitation pulse with a discretely sampled hyperbolic secant pulse that creates a square wave longitudinal magnetization as a function of gradient and off-resonance induced phase shifts between the subsequent echoes of the FSE sequence. This pulse is followed by the conventional train of refocusing pulses except that the first few pulses increase from near zero to the desired refocusing amplitude. Simulations and in vivo results at 3T indicate preserved image quality and much greater robustness of this new sequence to nonuniform RF fields. This robustness comes at the cost of 20% reduction in signal when the RF field is uniform and increased motion sensitivity. This RF field-insensitive sequence may overcome challenges of body imaging at high field and in patients with ascites.

摘要

使用快速自旋回波(FSE)序列在3T下采集的腹部图像,由于射频发射场不均匀性,常常会出现信号缺失。然而,理论表明,如果对磁化进行适当准备,FSE的重复重聚焦脉冲即使在射频幅度降低时也能够保持信号。在此,我们提出一种改进的FSE激发策略,它比传统FSE对发射场不均匀性更具鲁棒性。新的激发方法用离散采样的双曲正割脉冲取代标准的90度激发脉冲,该脉冲根据FSE序列后续回波之间的梯度和失谐诱导相移产生方波纵向磁化。此脉冲之后是传统的重聚焦脉冲序列,只是前几个脉冲从接近零增加到所需的重聚焦幅度。3T下的模拟和体内结果表明,该新序列保留了图像质量,并且对非均匀射频场具有更强的鲁棒性。当射频场均匀时,这种鲁棒性是以信号降低20%以及运动敏感性增加为代价的。这种对射频场不敏感的序列可能会克服高场下以及腹水患者的身体成像挑战。

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