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Slice-selective Tunable-flip AdiaBatic Low peak-power Excitation (STABLE) pulse

机译:切片选择可调翻转绝热低峰值功率激励(STABLE)脉冲

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摘要

Adiabatic pulses are useful in achieving uniform excitation profiles in the presence of B1 inhomogeneity. At higher fields, this inhomogeneity becomes more severe, further amplifying the need for B1-insensitive excitation. Although gradient modulation techniques for slice-selective adiabatic excitation have been introduced, a pulse that falls within the gradient and RF amplifier limits for most commercial human scanners is currently unavailable. In this work, we present an alternative gradient modulated approach for pulse design that achieves adiabatic slice selection with significantly lower RF peak power requirements. The resulting Slice-selective Tunable-flip AdiaBatic Low peak-power Excitation (STABLE) pulse consists of an oscillating gradient in conjunction with a BIR-4-like RF envelope that is sampled by many short spatial subpulses to achieve spatial selectivity. Simulations show that the expected spatial profile as well as the off-resonance behavior of the pulse remain invariant for a range of B1 values. Phantom and in vivo results demonstrate the adiabaticity and slice selectivity of the STABLE pulse.
机译:在存在B1不均匀性的情况下,绝热脉冲可用于获得均匀的激励曲线。在更高的磁场下,这种不均匀性变得更加严重,进一步放大了对B1不敏感激发的需求。尽管已引入了用于切片选择绝热激发的梯度调制技术,但目前尚无法获得大多数商用人体扫描仪的梯度和RF放大器限制范围内的脉冲。在这项工作中,我们提出了一种用于脉冲设计的替代梯度调制方法,该方法可实现绝热切片选择,同时显着降低RF峰值功率要求。产生的切片选择可调翻转绝热低峰值功率激励(STABLE)脉冲由一个振荡梯度和一个BIR-4型RF包络组成,该包络由许多短空间子脉冲采样以实现空间选择性。仿真表明,对于一系列的B1值,预期的空间分布以及脉冲的失谐行为都保持不变。幻像和体内结果证明了稳定脉冲的绝热性和切片选择性。

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