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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Time-optimal design for multidimensional and parallel transmit variable-rate selective excitation.
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Time-optimal design for multidimensional and parallel transmit variable-rate selective excitation.

机译:多维和并行传输可变速率选择性激励的时间最优设计。

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摘要

Variable-rate selective excitation (VERSE) is a radio frequency (RF) pulse reshaping technique. It is most commonly used to reduce the peak magnitude and specific absorption rate (SAR) of RF pulses by reshaping pulses and gradient waveforms to reduce RF magnitude while preserving excitation profiles. In this work, a general time-optimal VERSE algorithm for multidimensional and parallel transmit pulses is presented. Time optimality is achieved by translating peak RF limits to gradient upper bounds in excitation k-space. The limits are fed into a time-optimal gradient waveform design technique. Effective SAR reduction is achieved by reducing peak RF subject to a fixed pulse length. The presented method is different from other VERSE techniques in that it provides a noniterative time-optimal multidimensional solution, which drastically simplifies VERSE designs. Examples are given for 1D and 2D single channel and 2D parallel transmit pulses.
机译:可变速率选择性激励(VERSE)是一种射频(RF)脉冲整形技术。它最常用于通过对脉冲和梯度波形进行整形来降低RF幅度,同时保留激励曲线,从而降低RF脉冲的峰值幅度和比吸收率(SAR)。在这项工作中,提出了用于多维和并行发射脉冲的通用时间最优VERSE算法。通过将峰值RF限制转换为激发k空间中的梯度上限来实现时间最优。将限制输入到时间最佳梯度波形设计技术中。通过在固定脉冲长度下降低峰值RF,可以有效降低SAR。所提出的方法与其他VERSE技术的不同之处在于,它提供了一个非迭代的时间最优多维解决方案,从而极大地简化了VERSE设计。给出了1D和2D单通道和2D并行发射脉冲的示例。

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