Zu Zhongliang, Louie Elizabeth A, Lin Eugene C, Jiang Xiaoyu, Does Mark D, Gore John C, Gochberg Daniel F
Vanderbilt University Institute of Imaging Science, Nashville, Tennessee, USA.
Department of Radiology and Radiological Sciences, Vanderbilt University, Nashville, Tennessee, USA.
NMR Biomed. 2017 Oct;30(10). doi: 10.1002/nbm.3756. Epub 2017 Jun 7.
Chemical exchange saturation transfer (CEST) imaging of amine protons exchanging at intermediate rates and whose chemical shift is around 2 ppm may provide a means of mapping creatine. However, the quantification of this effect may be compromised by the influence of overlapping CEST signals from fast-exchanging amines and hydroxyls. We aimed to investigate the exchange rate filtering effect of a variation of CEST, named chemical exchange rotation transfer (CERT), as a means of isolating creatine contributions at around 2 ppm from other overlapping signals. Simulations were performed to study the filtering effects of CERT for the selection of transfer effects from protons of specific exchange rates. Control samples containing the main metabolites in brain, bovine serum albumin (BSA) and egg white albumen (EWA) at their physiological concentrations and pH were used to study the ability of CERT to isolate molecules with amines at 2 ppm that exchange at intermediate rates, and corresponding methods were used for in vivo rat brain imaging. Simulations showed that exchange rate filtering can be combined with conventional filtering based on chemical shift. Studies on samples showed that signal contributions from creatine can be separated from those of other metabolites using this combined filter, but contributions from protein amines may still be significant. This exchange filtering can also be used for in vivo imaging. CERT provides more specific quantification of amines at 2 ppm that exchange at intermediate rates compared with conventional CEST imaging.
对化学位移约为2 ppm且以中等速率交换的胺质子进行化学交换饱和转移(CEST)成像,可能提供一种绘制肌酸分布图的方法。然而,这种效应的量化可能会受到来自快速交换胺和羟基的重叠CEST信号的影响。我们旨在研究一种名为化学交换旋转转移(CERT)的CEST变体的交换率过滤效果,作为从其他重叠信号中分离出约2 ppm处肌酸贡献的一种方法。进行了模拟研究,以考察CERT对特定交换率质子转移效应选择的过滤效果。使用含有大脑中主要代谢物、生理浓度和pH值的牛血清白蛋白(BSA)和蛋清蛋白(EWA)的对照样品,研究CERT分离2 ppm处具有中等交换速率胺的分子的能力,并采用相应方法对大鼠脑进行活体成像。模拟结果表明,交换率过滤可与基于化学位移的传统过滤相结合。对样品的研究表明,使用这种组合滤波器可以将肌酸的信号贡献与其他代谢物的信号贡献分离,但蛋白质胺的贡献可能仍然很大。这种交换过滤也可用于活体成像。与传统的CEST成像相比,CERT能更特异性地量化2 ppm处中等交换速率的胺。