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用于T2*加权功能磁共振成像中信号恢复的先进三维定制射频脉冲。

Advanced three-dimensional tailored RF pulse for signal recovery in T2*-weighted functional magnetic resonance imaging.

作者信息

Yip Chun-Yu, Fessler Jeffrey A, Noll Douglas C

机构信息

Department of Electrical Engineering and Computer Science, University of Michigan, Ann Arbor, Michigan.

出版信息

Magn Reson Med. 2006 Nov;56(5):1050-9. doi: 10.1002/mrm.21048.

Abstract

T(2) (*)-weighted functional MR images are plagued by signal loss artifacts caused by susceptibility-induced through-plane dephasing. We present major advances to the original three-dimensional tailored RF (3DTRF) pulse method that pre-compensates the dephasing using three-dimensional selective excitation. The proposed 3DTRF pulses are designed iteratively with off-resonance incorporation and with a novel echo-volumar trajectory that frequency-encodes in z and phase-encodes in x,y. We also propose a computational scheme to accelerate the pulse design process. We demonstrate effective signal recovery in a 5-mm slice in both phantom and inferior brain, using 3DTRF pulses that are only 15.4 ms long. Compared to the original method, the new approach leads to significantly reduced pulse length and enhancement in slice selectivity. 3D images of the slice volume confirm fidelity of the excited phase pattern and slice profile.

摘要

T(2)*加权功能磁共振图像受到由磁化率诱导的层面去相位引起的信号丢失伪影的困扰。我们对原始的三维定制射频(3DTRF)脉冲方法进行了重大改进,该方法使用三维选择性激发对去相位进行预补偿。所提出的3DTRF脉冲通过失谐合并和一种新颖的回波容积轨迹进行迭代设计,该轨迹在z方向进行频率编码,在x、y方向进行相位编码。我们还提出了一种计算方案来加速脉冲设计过程。我们使用仅15.4毫秒长的3DTRF脉冲,在体模和大脑下部的5毫米切片中展示了有效的信号恢复。与原始方法相比,新方法显著缩短了脉冲长度并提高了切片选择性。切片体积的三维图像证实了激发相位模式和切片轮廓的保真度。

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