Determination of the Chemical-Shift Difference between the Lactate Multiplets and Its pH Dependence

Michael Bunse , Wulf-Ingo Jung , Günther Dietze , Otto Lutz
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引用次数: 3

Abstract

A volume-selective NMR method is presented for very exact determination of the difference of the Larmor frequencies between the coupled resonances of homonuclear AX3spin systems, as, for example, lactate. The frequency difference can be determined with an accuracy of 0.003 ppm even if only the doublet of the spin system can be detected. The method is based on the effects of homonuclear polarization transfer which occurs in localized double-spin-echo spectroscopy. It is used for determination of the chemical-shift difference of the lactate multiplets, which depends on the degree of dissociation and consequently on pH. Measurements were performed with a 1.5 T Siemens Magnetom SP 63 whole-body imager on solutions of lactate and acetic acid in physiological sodium chloride solution with pH from 1 to 11. As a consequence of these measurements, conclusions are possible for the optimum echo time for PRESS measurements which avoid signal losses from polarization transfer. Furthermore, the possibility of localized pH determination by this effect is discussed.

乳酸多胞胎化学位移差的测定及其对pH值的依赖性
提出了一种体积选择性核磁共振方法,用于非常精确地测定同核ax3自旋系统耦合共振之间的拉莫尔频率差异,例如乳酸盐。即使只能检测到自旋系统的双重态,也可以以0.003 ppm的精度确定频率差。该方法是基于局域双自旋回波光谱中发生的同核极化转移效应。它用于测定乳酸多态的化学位移差,这取决于解离程度,因此取决于pH。测量使用1.5 T西门子Magnetom SP 63全身成像仪对生理氯化钠溶液中的乳酸和乙酸溶液进行测量,pH从1到11。作为这些测量的结果,可以得出压敏测量的最佳回波时间,从而避免极化传输造成的信号损失。进一步讨论了利用该效应局部测定pH值的可能性。
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