Center of Functionally Integrative Neuroscience, Aarhus University Hospital, Nørrebrogade 44, Aarhus C, Denmark.
Neuroimage. 2010 Jan 1;49(1):104-13. doi: 10.1016/j.neuroimage.2009.07.068. Epub 2009 Aug 4.
Arterial Spin Labeling (ASL) is a method to measure perfusion using magnetically labeled blood water as an endogenous tracer. Being fully non-invasive, this technique is attractive for longitudinal studies of cerebral blood flow in healthy and diseased individuals, or as a surrogate marker of metabolism. So far, ASL has been restricted mostly to specialist centers due to a generally low SNR of the method and potential issues with user-dependent analysis needed to obtain quantitative measurement of cerebral blood flow (CBF). Here, we evaluated a particular implementation of ASL (called Quantitative STAR labeling of Arterial Regions or QUASAR), a method providing user independent quantification of CBF in a large test-retest study across sites from around the world, dubbed "The QUASAR reproducibility study". Altogether, 28 sites located in Asia, Europe and North America participated and a total of 284 healthy volunteers were scanned. Minimal operator dependence was assured by using an automatic planning tool and its accuracy and potential usefulness in multi-center trials was evaluated as well. Accurate repositioning between sessions was achieved with the automatic planning tool showing mean displacements of 1.87+/-0.95 mm and rotations of 1.56+/-0.66 degrees . Mean gray matter CBF was 47.4+/-7.5 [ml/100 g/min] with a between-subject standard variation SD(b)=5.5 [ml/100 g/min] and a within-subject standard deviation SD(w)=4.7 [ml/100 g/min]. The corresponding repeatability was 13.0 [ml/100 g/min] and was found to be within the range of previous studies.
动脉自旋标记(ASL)是一种使用磁标记的血液水作为内源性示踪剂来测量灌注的方法。由于该技术完全是非侵入性的,因此对于健康和患病个体的脑血流的纵向研究,或作为代谢的替代标志物,都具有吸引力。到目前为止,由于该方法的 SNR 普遍较低,以及为了获得脑血流(CBF)的定量测量而需要进行潜在的依赖于用户的分析,ASL 主要局限于专业中心。在这里,我们评估了一种特定的 ASL 实现(称为动脉区域的定量 STAR 标记或 QUASAR),这是一种在全球范围内的多个站点的大型测试-重测研究中提供用户独立的 CBF 定量测量的方法,称为“QUASAR 可重复性研究”。共有来自亚洲、欧洲和北美的 28 个站点参与,共有 284 名健康志愿者接受了扫描。通过使用自动规划工具,确保了最小的操作人员依赖性,并且还评估了其在多中心试验中的准确性和潜在有用性。通过自动规划工具实现了准确的会话间重新定位,显示出平均位移为 1.87+/-0.95 毫米和旋转 1.56+/-0.66 度。灰质平均 CBF 为 47.4+/-7.5 [ml/100 g/min],个体间标准偏差 SD(b)=5.5 [ml/100 g/min],个体内标准偏差 SD(w)=4.7 [ml/100 g/min]。相应的重复性为 13.0 [ml/100 g/min],并且发现其在先前研究的范围内。