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Mapping resting-state functional connectivity using perfusion MRI.

机译:使用灌注MRI绘制静止状态功能连接。

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Resting-state, low-frequency (<0.08 Hz) fluctuations of blood oxygenation level-dependent (BOLD) magnetic resonance signal have been shown to exhibit high correlation among functionally connected regions. However, correlations of cerebral blood flow (CBF) fluctuations during the resting state have not been extensively studied. The main challenges of using arterial spin labeling perfusion magnetic resonance imaging to detect CBF fluctuations are low sensitivity, low temporal resolution, and contamination from BOLD. This work demonstrates CBF-based quantitative functional connectivity mapping by combining continuous arterial spin labeling (CASL) with a neck labeling coil and a multi-channel receiver coil to achieve high perfusion sensitivity. In order to reduce BOLD contamination, the CBF signal was extracted from the CASL signal time course by high frequency filtering. This processing strategy is compatible with sinc interpolation for reducing the timing mismatch between control and label images and hasthe flexibility of choosing an optimal filter cutoff frequency to minimize BOLD fluctuations. Most subjects studied showed high CBF correlation in bilateral sensorimotor areas with good suppression of BOLD contamination. Root-mean-square CBF fluctuation contributing to bilateral correlation was estimated to be 29+/-19% (N=13) of the baseline perfusion, while BOLD fluctuation was 0.26+/-0.14% of the mean intensity (at 3 T and 12.5 ms echo time).
机译:已经显示,血液氧合水平依赖性(BOLD)磁共振信号的静止状态,低频(<0.08 Hz)波动在功能连接区域之间显示出高度相关性。但是,尚未对静息状态下脑血流量(CBF)波动的相关性进行广泛研究。使用动脉自旋标记灌注磁共振成像检测CBF波动的主要挑战是灵敏度低,时间分辨率低以及BOLD污染。这项工作通过将连续动脉自旋标记(CASL)与颈部标记线圈和多通道接收器线圈结合以实现高灌注敏感性,展示了基于CBF的定量功能连接映射。为了减少BOLD污染,通过高频滤波从CASL信号时程中提取了CBF信号。该处理策略与Sinc插值兼容,可减少控制图像和标签图像之间的时序不匹配,并具有选择最佳滤波器截止频率以最大程度减小BOLD波动的灵活性。大多数研究对象在双侧感觉运动区域显示出高的CBF相关性,并能很好地抑制BOLD污染。估计双侧相关性的均方根CBF波动约为基线灌注的29 +/- 19%(N = 13),而BOLD波动为平均强度的0.26 +/- 0.14%(在3 T和回声时间12.5毫秒)。

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