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使用多通道并行发射系统进行射频编码。

RF encoding using a multielement parallel transmit system.

机构信息

Philips Research Europe-Hamburg, Hamburg, Germany.

出版信息

Magn Reson Med. 2010 Jun;63(6):1463-70. doi: 10.1002/mrm.22439.

Abstract

Radiofrequency (RF) encoding using spatially variant RF transmission fields represents an alternative to the conventional signal-encoding techniques applied in MRI, which are based on main field gradients. Thus, RF encoding might allow omitting the use of all main field gradients, alleviating acoustic noise and other main field gradient-related problems. This study investigates the potential of RF transmit encoding using spatially nonlinear RF fields generated by an eight-channel parallel transmit system equipped with the corresponding transmit array. Appropriate spatial encoding functions are determined iteratively by randomized superposition of the array element sensitivities and judging their performance. Besides RF amplitude-based signal encoding, the possibility of RF phase-dominated encoding is investigated to allow future fast imaging applications. The theoretical background is given and experimental phantom results are compared with predictions from corresponding simulations to prove the basic feasibility of the approach for low-resolution MRI. Deviations of roughly 10-15% between main field and RF encoded images were found for an in-plane resolution of 5 x 5 mm(2). The approach of RF encode MRI does not seem to be able to replace standard main field gradient encoding completely, but a suitable combination of both concepts could find promising applications.

摘要

射频(RF)编码使用空间变化的 RF 传输场表示了对传统 MRI 中应用的基于主磁场梯度的信号编码技术的替代。因此,RF 编码可能允许省略所有主磁场梯度的使用,减轻声噪声和其他与主磁场梯度相关的问题。本研究调查了配备相应发射阵列的八通道并行发射系统产生的空间非线性 RF 场的 RF 发射编码的潜力。通过随机叠加阵列元件灵敏度并判断其性能来迭代地确定适当的空间编码函数。除了基于 RF 幅度的信号编码之外,还研究了 RF 相位主导编码的可能性,以允许未来的快速成像应用。给出了理论背景,并将实验体模结果与相应模拟的预测进行了比较,以证明该方法用于低分辨率 MRI 的基本可行性。对于平面分辨率为 5 x 5 mm(2),在主磁场和 RF 编码图像之间发现了大约 10-15%的偏差。RF 编码 MRI 的方法似乎不能完全替代标准的主磁场梯度编码,但这两种概念的适当组合可能会有有前途的应用。

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