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Improving B0 Correction for pH-Weighted Amine Proton Chemical Exchange Saturation Transfer (CEST) Imaging by Use of k-Means Clustering and Lorentzian Estimation

机译:通过使用k均值聚类和Lorentzian估计来改善pH加权的胺质子化学交换饱和转移(CEST)成像的B0校正

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摘要

Amine chemical exchange saturation transfer (CEST) echoplanar imaging (EPI) provides unique pH and amino acid MRI contrast, enabling sensitive detection of altered microenvironment properties in various diseases. However, CEST contrast is sensitive to static magnetic field (B0) inhomogeneities. Here we propose 2 new B0 correction algorithms for use in correcting pH-weighted amine CEST EPI based on k-means clustering and Lorentzian fitting of CEST data: the iterative downsampling estimation using Lorentzian fitting and the 2-stage Lorentzian estimation with 4D polynomial fitting. Higher quality images of asymmetric magnetization transfer ratio (MTRasym) at 3.0 ppm could be obtained with the proposed algorithms than with the existing B0 correction methods. In particular, the proposed methods are shown to improve the intertissue consistency, interpatient consistency, and tumor region signal-to-noise ratio of MTRasym at 3.0 ppm images, with nonexcessive computation time.
机译:胺化学交换饱和转移(CEST)回波平面成像(EPI)可提供独特的pH和氨基酸MRI对比度,从而能够敏感地检测各种疾病中微环境特性的变化。但是,CEST对比度对静态磁场(B0)不均匀性敏感。在此,我们提出了两种新的B0校正算法,用于基于k-均值聚类和CEST数据的Lorentz拟合来校正pH加权胺CEST EPI:使用Lorentzian拟合的迭代下采样估计和使用4D多项式拟合的2级Lorentzian估计。与现有的B0校正方法相比,所提出的算法可获得3.0 ppm的更高质量的非对称磁化传递比(MTRasym)图像。尤其是,所显示的方法显示了在3.0 ppm的图像下可改善MTRasym的组织间一致性,患者间一致性以及肿瘤区域的信噪比,并且计算时间不会过多。

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