Functional MRI Laboratory, Department of Biomedical Engineering, University of Michigan, Ann Arbor, Michigan 48105, USA.
Magn Reson Med. 2011 Jun;65(6):1570-7. doi: 10.1002/mrm.22922. Epub 2011 Mar 28.
The first implementation of real-time acquisition and analysis of arterial spin labeling-based functional magnetic resonance imaging time series is presented in this article. The implementation uses a pseudo-continuous labeling scheme followed by a spiral k-space acquisition trajectory. Real-time reconstruction of the images, preprocessing, and regression analysis of the functional magnetic resonance imaging data were implemented on a laptop computer interfaced with the MRI scanner. The method allows the user to track the current raw data, subtraction images, and the cumulative t-statistic map overlaid on a cumulative subtraction image. The user is also able to track the time course of individual time courses and interactively selects a region of interest as a nuisance covariate. The pulse sequence allows the user to adjust acquisition and labeling parameters while observing their effect on the image within two successive pulse repetition times. This method is demonstrated by two functional imaging experiments: a simultaneous finger-tapping and visual stimulation paradigm, and a bimanual finger-tapping task.
本文首次实现了基于动脉自旋标记的功能磁共振成像时间序列的实时采集和分析。该实现使用伪连续标记方案,随后采用螺旋 k 空间采集轨迹。图像的实时重建、功能磁共振成像数据的预处理和回归分析都在与 MRI 扫描仪接口的笔记本电脑上实现。该方法允许用户跟踪当前的原始数据、减影图像以及叠加在累积减影图像上的累积 t 统计映射。用户还能够跟踪单个时间序列的时间过程,并以交互方式选择感兴趣区域作为混杂协变量。该脉冲序列允许用户在两个连续脉冲重复时间内观察图像,同时调整采集和标记参数,以观察它们对图像的影响。该方法通过两个功能成像实验得到验证:同时手指敲击和视觉刺激范式,以及双手手指敲击任务。