UIH America, Inc., Houston, TX, United States of America.
Shanghai United Imaging Healthcare Co., Ltd., Shanghai, People's Republic of China.
Phys Med Biol. 2022 Aug 19;67(17). doi: 10.1088/1361-6560/ac8591.
Gradient and spin echo (GRASE) is widely employed in arterial spin labeling (ASL) as an efficient readout sequence. Hemodynamic parameter mappings of perfusion, such as cerebral blood flow (CBF) and arterial transit time (ATT), can be derived via multi-delay ASL acquisitions. Multi-delay ASL perfusion imaging inevitably suffers limited signal-to-noise ratio (SNR) since a motion-sensitized vessel suppressing module has to be employed to highlight perfusion signals. The present work reveals that in multi-delay ASL, manipulation of GRASE sequence on either planar imaging echo echo train for adjusted spatial resolutions or FSE echo train for modulated extent of-blurring can significantly alter the mapping contrasts among tissues and among cerebral lobes under different pathways of blood circulation, and meanwhile regulates SNR. Four separate multi-delay ASL scans with different echo train designs in 3D whole brain covering GRASE were carried out for healthy subjects to evaluate the variations in regard to the parameter quantifications and SNR. Based on the quantification mappings, the GRASE acquisition with moderate spatial resolution (3.5 × 3.5 × 4 mm) and segmentedscheme was recognized for the first time to be recommended for more unambiguous CBF and ATT contrasts between GM and WM in conjunction with more enhanced ATT contrast between anterior and posterior cerebral circulations, with reasonably good SNR. The technical proposal is of great value for the cutting-edge research of a variety of neurological diseases of global concerns.
梯度和自旋回波(GRASE)广泛应用于动脉自旋标记(ASL)中,作为一种有效的读出序列。通过多延迟 ASL 采集,可以获得灌注的血流动力学参数图,如脑血流量(CBF)和动脉传输时间(ATT)。由于必须采用运动敏感血管抑制模块来突出灌注信号,因此多延迟 ASL 灌注成像不可避免地会受到有限的信噪比(SNR)的影响。本研究表明,在多延迟 ASL 中,对平面成像回波回波链的 GRASE 序列进行操作,以调整空间分辨率,或对 FSE 回波链进行调制,以改变模糊程度,可以显著改变不同血液循环途径下组织之间和脑叶之间的映射对比,并同时调节 SNR。对健康受试者进行了 4 次不同 echo train 设计的 3D 全脑多延迟 ASL 扫描,以评估不同参数量化和 SNR 的变化。基于量化映射,首次发现具有中等空间分辨率(3.5×3.5×4mm)和分段方案的 GRASE 采集推荐用于 GM 和 WM 之间更明确的 CBF 和 ATT 对比,同时增强前脑和后脑循环之间的 ATT 对比,具有相当好的 SNR。该技术方案对于各种全球关注的神经疾病的前沿研究具有重要价值。