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Amide proton transfer imaging with improved robustness to magnetic field inhomogeneity and magnetization transfer asymmetry using saturation with frequency alternating RF irradiation

机译:酰胺质子转移成像具有增强的抗磁场不均匀性和磁化转移不对称性的鲁棒性(使用饱和度和频率交替的RF辐射)

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摘要

Amide proton transfer (APT) imaging has shown promise as an indicator of tissue pH and as a marker for brain tumors. Sources of error in APT measurements include direct water saturation, and magnetization transfer (MT) from membranes and macromolecules. These are typically suppressed by postprocessing asymmetry analysis. However, this approach is strongly dependent on B0 homogeneity and can introduce additional errors due to intrinsic MT asymmetry, aliphatic proton features opposite the amide peak and radiation damping-induced asymmetry. Although several methods exist to correct for B0 inhomogeneity, they tremendously increase scan times and do not address errors induced by asymmetry of the z-spectrum. In this article, a novel saturation scheme—saturation with frequency alternating RF irradiation (SAFARI)—is proposed in combination with a new magnetization transfer ratio (MTR) parameter designed to generate APT images insensitive to direct water saturation and MT, even in the presence of B0 inhomogeneity. The feasibility of the SAFARI technique is demonstrated in phantoms and in the human brain. Experimental results show that SAFARI successfully removes direct water saturation and MT contamination from APT images. It is insensitive to B0 offsets up to 180 Hz without using additional B0 correction, thereby dramatically reducing scanning time. Magn Reson Med, 2011. © 2011 Wiley Periodicals, Inc.
机译:酰胺质子转移(APT)成像已显示出有望作为组织pH值的指标和脑肿瘤的指标。 APT测量中的误差来源包括直接水饱和以及膜和大分子的磁化传递(MT)。这些通常通过后处理不对称分析来抑制。然而,这种方法在很大程度上依赖于B 0 的均一性,并且由于固有的MT不对称性,与酰胺峰相对的脂族质子特征以及辐射衰减引起的不对称性而可能引入其他误差。尽管存在几种校正B 0 不均匀性的方法,但它们极大地增加了扫描时间,并且无法解决z光谱不对称引起的错误。在本文中,提出了一种新颖的饱和方案-频率交替射频辐射(SAFARI)饱和-结合新的磁化传递比(MTR)参数,该参数旨在生成对直接水饱和度和MT不敏感的APT图像,即使存在B 0 不均匀性SAFARI技术的可行性已在幻影和人脑中得到证明。实验结果表明,SAFARI成功地从APT图像中去除了直接的水饱和度和MT污染。它对高达180 Hz的B 0 偏移不敏感,无需使用额外的B 0 校正,从而大大减少了扫描时间。 Magn Reson Med,2011年。©2011 Wiley Periodicals,Inc.。

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