Singapore Bioimaging Consortium, Agency for Science, Technology and Research, Biopolis, Singapore.
NMR Biomed. 2010 Nov;23(9):1061-70. doi: 10.1002/nbm.1533.
The combination of flow-sensitive alternating inversion recovery (FAIR) and single-shot k-space-banded gradient- and spin-echo (kbGRASE) is proposed here to measure perfusion in the mouse brain with high sensitivity and stability. Signal-to-noise ratio (SNR) analysis showed that kbGRASE-FAIR boosts image and temporal SNRs by 2.01 ± 0.08 and 2.50 ± 0.07 times, respectively, when compared with standard single-shot echo planar imaging (EPI)-FAIR implemented in our experimental systems, although the practically achievable spatial resolution was slightly reduced. The effects of varying physiological parameters on the precision and reproducibility of cerebral blood flow (CBF) measurements were studied following changes in anesthesia regime, capnia and body temperature. The functional MRI time courses with kbGRASE-FAIR showed a more stable response to 5% CO(2) than did those with EPI-FAIR. The results establish kbGRASE-FAIR as a practical and robust protocol for quantitative CBF measurements in mice at 9.4 T.
本文提出了一种结合流动敏感交替反转恢复(FAIR)和单次 k 空间带梯度和自旋回波(kbGRASE)的方法,用于以高灵敏度和稳定性测量小鼠大脑中的灌注。信噪比(SNR)分析表明,与我们实验系统中实施的标准单次回波平面成像(EPI)-FAIR 相比,kbGRASE-FAIR 分别将图像和时间 SNR 提高了 2.01±0.08 和 2.50±0.07 倍,尽管实际可实现的空间分辨率略有降低。在改变麻醉方案、二氧化碳分压和体温后,研究了生理参数变化对脑血流(CBF)测量精度和重现性的影响。kbGRASE-FAIR 的功能磁共振成像时间过程对 5% CO(2)的反应比 EPI-FAIR 更稳定。结果表明,kbGRASE-FAIR 是在 9.4T 下对小鼠进行定量 CBF 测量的一种实用且稳健的方案。