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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Spatial domain method for the design of RF pulses in multicoil parallel excitation.
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Spatial domain method for the design of RF pulses in multicoil parallel excitation.

机译:多线圈并联激励中射频脉冲设计的空间域方法。

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摘要

Parallel excitation has been introduced as a means of accelerating multidimensional, spatially-selective excitation using multiple transmit coils, each driven by a unique RF pulse. Previous approaches to RF pulse design in parallel excitation were either formulated in the frequency domain or restricted to echo-planar trajectories, or both. This paper presents an approach that is formulated as a quadratic optimization problem in the spatial domain and allows the use of arbitrary k-space trajectories. Compared to frequency domain approaches, the new design method has some important advantages. It allows for the specification of a region of interest (ROI), which improves excitation accuracy at high speedup factors. It allows for magnetic field inhomogeneity compensation during excitation. Regularization may be used to control integrated and peak pulse power. The effects of Bloch equation nonlinearity on the large-tip-angle excitation error of RF pulses designed with the method are investigated, and the utility of Tikhonov regularization in mitigating this error is demonstrated.
机译:引入平行激励作为使用多个发射线圈来加速多维空间选择性激励的手段,每个发射线圈均由唯一的RF脉冲驱动。并行激励中射频脉冲设计的先前方法是在频域中制定的,或者仅限于回波平面轨迹,或两者兼而有之。本文提出了一种方法,该方法被公式化为空间域中的二次优化问题,并允许使用任意k空间轨迹。与频域方法相比,新的设计方法具有一些重要的优势。它允许指定感兴趣区域(ROI),从而提高了高加速因子时的激励精度。它允许在激励过程中补偿磁场的不均匀性。正则化可用于控制积分和峰值脉冲功率。研究了Bloch方程非线性对使用该方法设计的RF脉冲的大尖角激励误差的影响,并证明了Tikhonov正则化在减轻该误差方面的效用。

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