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Multiphase pseudocontinuous arterial spin labeling (MP-PCASL) for robust quantification of cerebral blood flow

机译:多相假连续动脉自旋标记(MP-PCASL)用于脑血流的稳健定量

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摘要

Pseudocontinuous arterial spin labeling (PCASL) has been demonstrated to provide the sensitivity of the continuous arterial spin labeling method while overcoming many of the limitations of that method. Because the specification of the phases in the radiofrequency pulse train in PCASL defines the tag and control conditions of the flowing arterial blood, its tagging efficiency is sensitive to factors, such as off-resonance fields, that induce phase mismatches between the radiofrequency pulses and the flowing spins. As a result, the quantitative estimation of cerebral blood flow with PCASL can exhibit a significant amount of error when these factors are not taken into account. In this paper, the sources of the tagging efficiency loss are characterized and a novel PCASL method that utilizes multiple phase offsets is proposed to reduce the tagging efficiency loss in PCASL. Simulations are performed to evaluate the feasibility and the performance of the proposed method. Quantitative estimates of cerebral blood flow obtained with multiple phase offset PCASL are compared to estimates obtained with conventional PCASL and pulsed arterial spin labeling. Our results show that multiple phase offset PCASL provides robust cerebral blood flow quantification while retaining much of the sensitivity advantage of PCASL. Magn Reson Med, 2010. © 2010 Wiley-Liss, Inc.
机译:伪连续动脉自旋标记(PCASL)已被证明可提供连续动脉自旋标记方法的敏感性,同时克服了该方法的许多局限性。由于PCASL中射频脉冲序列中的相位规范定义了流动的动脉血的标记和控制条件,因此其标记效率对诸如非共振场之类的因素敏感,这些因素会引起射频脉冲与电磁波之间的相位失配。旋转旋转。结果,当不考虑这些因素时,用PCASL对脑血流进行定量估计会显示出很大的误差。在本文中,对标记效率损失的来源进行了表征,并提出了一种利用多相位偏移的新PCASL方法来减少PCASL中的标记效率损失。仿真进行了评估该方法的可行性和性能。将使用多相偏移PCASL获得的脑血流量的定量估计值与使用常规PCASL和脉冲动脉自旋标记获得的估计值进行比较。我们的结果表明,多相偏移PCASL提供了可靠的脑血流定量功能,同时保留了PCASL的许多灵敏度优势。 Magn Reson Med,2010年。©2010 Wiley-Liss,Inc.。

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