Pell Gaby S, Lewis David P, Ordidge Roger J, Branch Craig A
Department of Medical Physics, Nathan S Kline Institute for Psychiatric Research, Orangeburg, New York, USA.
Magn Reson Med. 2004 Jan;51(1):46-54. doi: 10.1002/mrm.10674.
Optimal implementation of pulsed arterial spin labeling (PASL) methods such as flow-sensitive alternating inversion recovery (FAIR), require the minimization of interactions between the inversion and imaging slabs. For FAIR, the inversion:imaging slice thickness ratio (STR) is usually at least 3:1 in order to fully contain the extent of the imaging slice. The resulting gap exacerbates the transit time. So far, efforts to minimize the STR have concentrated on the inversion profile. However, the imaging profile remains a limiting factor especially for rapid sequences such as turbo fast low-angle shot (TurboFLASH) which uses short pulses. This study reports the implementation of a TurboFLASH sequence with optimized inversion and imaging profiles. Slice-selection is achieved with a preparation module incorporating a pair of identical adiabatic frequency offset corrected inversion (FOCI) pulses. The optimum radiofrequency (RF) and gradient scheme for this pulse combination is described, and the relaxation characteristics of the slice-selection scheme are investigated. Phantom experiments demonstrate a reduction in the STR to approximately 1.13:1. Implementation in an animal model is described, and the benefit of the improved profile in probing the sensitivity of the flow signal to tagging geometry is demonstrated. Sensitivity to transit time effects can be minimized with this sequence, and ASL methodologies can be better explored as a result of the improved conformance with the ideal of square slice profiles.
诸如血流敏感交替反转恢复(FAIR)等脉冲动脉自旋标记(PASL)方法的最佳实施,需要将反转与成像层之间的相互作用降至最低。对于FAIR,反转:成像层厚度比(STR)通常至少为3:1,以便完全覆盖成像层的范围。由此产生的间隙会加剧通过时间。到目前为止,将STR最小化的努力主要集中在反转轮廓上。然而,成像轮廓仍然是一个限制因素,特别是对于使用短脉冲的快速序列,如快速低角度激发快速成像(TurboFLASH)。本研究报告了一种具有优化反转和成像轮廓的TurboFLASH序列的实施情况。通过一个包含一对相同的绝热频率偏移校正反转(FOCI)脉冲的准备模块来实现层选择。描述了这种脉冲组合的最佳射频(RF)和梯度方案,并研究了层选择方案的弛豫特性。体模实验表明,STR降低到了约1.13:1。描述了在动物模型中的实施情况,并证明了改进后的轮廓在探测血流信号对标记几何形状的敏感性方面的优势。使用该序列可以将对通过时间效应的敏感性降至最低,并且由于与理想的方形层轮廓的一致性得到改善,ASL方法可以得到更好的探索。