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Multiband RF pulse design for realistic gradient performance

机译:多频带RF脉冲设计,实现现实梯度性能

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摘要

Purpose Simultaneous multi‐slice techniques are reliant on multiband RF pulses, for which conventional design strategies result in long pulse durations, lengthening echo‐times so lowering SNR for spin‐echo imaging, and lengthening repetition times for gradient echo sequences. Pulse durations can be reduced with advanced RF pulse design methods that use time‐variable selection gradients. However, the ability of gradient systems to reproduce fast switching pulses is often limited and can lead to image artifacts when ignored. We propose a time‐efficient pulse design method that inherently produces gradient waveforms with lower temporal bandwidth. Methods Efficient multiband RF pulses with time‐variable gradients were designed using time‐optimal VERSE. Using VERSE directly on multiband pulses leads to gradient waveforms with high temporal bandwidth, whereas VERSE applied first to singleband RF pulses and then modulated to make them multiband, significantly reduces this. The relative performance of these approaches was compared using simulation and experimental measurements. Results Applying VERSE before multiband modulation was successful at removing out‐of‐band slice distortion. This effectively removes the need for high frequency modulation in the gradient waveform while preserving the benefit of time‐efficiency inherited from VERSE. Conclusion We propose a time‐efficient RF pulse design that produces gradient pulses with lower temporal bandwidth, reducing image artifacts associated with finite temporal bandwidth of gradient systems.
机译:目的同步多层技术依赖于多频带RF脉冲,其传统设计策略导致长脉冲持续时间,延长回声时间,使SNR用于自旋回声成像,以及用于梯度回波序列的延长重复次数。可以使用使用时间可变选择梯度的高级RF脉冲设计方法来减少脉冲持续时间。然而,梯度系统再现快速切换脉冲的能力通常是有限的并且可以在忽略时导致图像伪像。我们提出了一种时效的脉冲设计方法,该方法固有地产生具有较低时间带宽的梯度波形。方法使用时间最佳verse设计具有时间可变梯度的高效多频RF脉冲。直接在多频段上使用verses导致具有高时间带宽的梯度波形,而第一章首先应用于单带RF脉冲,然后调制以使其多频带,显着降低了这一点。使用模拟和实验测量比较这些方法的相对性能。结果在多频带调制之前施用verse成功拆除带外切片畸变。这有效地消除了对梯度波形中的高频调制的需要,同时保留从VESSE遗传的时间效率的益处。结论我们提出了一种时间有效的RF脉冲设计,产生具有较低时间带宽的梯度脉冲,减少与梯度系统的有限时间带宽相关的图像伪像。

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