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Mapping brain function using a 30-day interval between baseline and activation: a novel arterial spin labeling fMRI approach

机译:使用介于基线和激活之间的30天间隔来绘制脑功能图:一种新型的动脉自旋标记功能性核磁共振成像方法

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摘要

By comparing hemodynamic signals acquired immediately before and during activation, functional magnetic resonance imaging (fMRI) is well suited for mapping acute changes in brain function. However, it remains unclear whether fMRI can map functional changes over longer periods. Here, we address this issue by empirically testing the feasibility of arterial spin labeling (ASL) fMRI to detect changes in cerebral blood flow (CBF) with baseline and task separated by 1 month. To increase the sensitivity of the method, we applied an algorithm that yielded flow density (CBFd) images that were independent of tissue content. To increase the accuracy, we developed a technique that generated arterial transit time at each voxel, independently. Results showed that activation changes in CBFd during the same session were statistically the same as across 30 days. The activation CBFd on day-30 was 34% (motor) and 25% (visual) higher than the respective baselines of 83 and 107 mL/100 g/min obtained on day-1. Furthermore, the signal-to-noise ratio of the CBFd measurement was 2.1 and 2.9 times higher than that of the conventional CBF for within-subject and across-subjects comparisons, respectively (n=9 healthy young subjects). Taken together, these results indicate that CBFd measure could be better suited than net CBF to map long-term changes in brain function.
机译:通过比较在激活之前和激活过程中立即获得的血液动力学信号,功能磁共振成像(fMRI)非常适合于绘制脑功能的急性变化。然而,目前尚不清楚功能磁共振成像是否可以绘制更长时期的功能变化。在这里,我们通过经验测试动脉旋转标记(ASL)fMRI在基线和任务间隔1个月时检测脑血流量(CBF)变化的可行性来解决此问题。为了提高该方法的灵敏度,我们应用了一种算法,该算法产生的流密度(CBFd)图像与组织含量无关。为了提高准确性,我们开发了一种技术,该技术可在每个体素处独立生成动脉渡越时间。结果显示,同一疗程中CBFd的激活变化在统计学上与30天相同。第30天的活化CBFd比第1天分别获得的基线83和107μmL/ 100μg/ min分别高34%(运动)和25%(视觉)。此外,CBFd测量的信噪比分别比传统CBF高了2.1倍和2.9倍,适用于受试者内部和受试者之间的比较(n = 9名健康的年轻受试者)。两者合计,这些结果表明CBFd措施可能比净CBF更适合于绘制大脑功能的长期变化。

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