Athinoula A. Martinos Center for Biomedical Imaging, Department of Radiology, Massachusetts General Hospital and Harvard Medical School, Charlestown, MA, USA.
Department of Radiology, 3rd Affiliated Hospital, Zhengzhou University, Henan, China.
Sci Rep. 2017 Mar 7;7(1):84. doi: 10.1038/s41598-017-00167-y.
Chemical Exchange Saturation Transfer (CEST) MRI is sensitive to dilute metabolites with exchangeable protons, allowing tissue characterization in diseases such as acute stroke and tumor. CEST quantification using multi-pool Lorentzian fitting is challenging due to its strong dependence on image signal-to-noise ratio (SNR), initial values and boundaries. Herein we proposed an Image Downsampling Expedited Adaptive Least-squares (IDEAL) fitting algorithm that quantifies CEST images based on initial values from multi-pool Lorentzian fitting of iteratively less downsampled images until the original resolution. The IDEAL fitting in phantom data with superimposed noise provided smaller coefficient of variation and higher contrast-to-noise ratio at a faster fitting speed compared to conventional fitting. We further applied the IDEAL fitting to quantify CEST MRI in rat gliomas and confirmed its advantage for in vivo CEST quantification. In addition to significant changes in amide proton transfer and semisolid macromolecular magnetization transfer effects, the IDEAL fitting revealed pronounced negative contrasts of tumors in the fitted CEST maps at 2 ppm and -1.6 ppm, likely arising from changes in creatine level and nuclear overhauser effects, which were not found using conventional method. It is anticipated that the proposed method can be generalized to quantify MRI data where SNR is suboptimal.
化学交换饱和转移(CEST)MRI 对具有可交换质子的稀代谢物敏感,允许在急性中风和肿瘤等疾病中进行组织特征分析。由于其强烈依赖于图像信噪比(SNR)、初始值和边界,因此使用多池洛伦兹拟合进行 CEST 定量是具有挑战性的。在此,我们提出了一种图像下采样加速自适应最小二乘(IDEAL)拟合算法,该算法基于多池洛伦兹拟合的初始值对 CEST 图像进行定量,该拟合通过迭代对降采样图像进行较少的下采样,直到达到原始分辨率。与传统拟合相比,在具有叠加噪声的体模数据中,IDEAL 拟合提供了更小的变异系数和更高的对比噪声比,并且拟合速度更快。我们进一步将 IDEAL 拟合应用于大鼠脑胶质瘤的 CEST MRI 定量,并证实了其在体内 CEST 定量中的优势。除了酰胺质子转移和半固态大分子磁化转移效应的显著变化外,IDEAL 拟合还在拟合的 CEST 图谱中在 2 ppm 和-1.6 ppm 处显示出肿瘤的明显负对比,这可能是由于肌酸水平和核奥弗豪瑟效应的变化所致,而使用传统方法未发现这些变化。预计所提出的方法可以推广到 SNR 不理想的 MRI 数据定量中。