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理解存在 MT 时的定量脉冲 CEST。

Understanding quantitative pulsed CEST in the presence of MT.

机构信息

Department of Medical Biophysics, University of Toronto, Toronto, Ontario, Canada.

出版信息

Magn Reson Med. 2012 Apr;67(4):979-90. doi: 10.1002/mrm.23074. Epub 2011 Aug 19.

Abstract

Phantom experiments in agar and ammonium chloride were performed to evaluate a three-pool model of magnetization transfer and chemical exchange saturation transfer (CEST) in a pulsed saturation transfer experiment. The utility of the pulsed CEST method was demonstrated by varying the pH of the phantoms and observing the effect upon the CEST spectra both with and without the solid agar (the magnetization transfer pool), while fitting the spectra to the Bloch equation model with exchange. Pulsed CEST could be used to robustly quantify parameters related to CEST, including the exchange rate constant describing proton exchange with free water and the concentration of exchanging protons. Furthermore, the exchange rate constant and the CEST pool offset frequency of the ammonium chloride remained unchanged in the presence of a magnetization transfer pool. The logarithm of the fitted exchange rate constant was linearly related to pH: this relationship was maintained in the presence of magnetization transfer.

摘要

在琼脂和氯化铵中进行了幻影实验,以评估脉冲饱和转移实验中磁化转移和化学交换饱和转移 (CEST) 的三池模型。通过改变幻影的 pH 值并观察在有和没有固体琼脂(磁化转移池)的情况下对 CEST 光谱的影响,同时根据具有交换的 Bloch 方程模型对光谱进行拟合,证明了脉冲 CEST 方法的实用性。可以使用脉冲 CEST 来稳健地定量与 CEST 相关的参数,包括描述与游离水质子交换的交换率常数和交换质子的浓度。此外,在存在磁化转移池的情况下,氯化铵的交换率常数和 CEST 池偏移频率保持不变。拟合的交换率常数的对数与 pH 值呈线性关系:在存在磁化转移的情况下,这种关系得以维持。

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