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A Rapid Method for Direct Detection of Metabolic Conversion and Magnetization Exchange with Application to Hyperpolarized Substrates

机译:一种快速检测代谢转换和磁化交换的快速方法应用于超极化基材

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摘要

In this work, we present a new MR spectroscopy approach for directly observing nuclear spins that undergo exchange, metabolic conversion, or, generally, any frequency shift during a mixing time. Unlike conventional approaches to observe these processes, such as exchange spectroscopy (EXSY), this rapid approach requires only a single encoding step and thus is readily applicable to hyperpolarized MR in which the magnetization is not replenished after T1 decay and RF excitations. This method is based on stimulated-echoes and uses phase-sensitive detection in conjunction with precisely chosen echo times in order to separate spins generated during the mixing time from those present prior to mixing. We are calling the method Metabolic Activity Decomposition Stimulated-echo Acquisition Mode or MAD-STEAM. We have validated this approach as well as applied it in vivo to normal mice and a transgenic prostate cancer mouse model for observing pyruvate-lactate conversion, which has been shown to be elevated in numerous tumor types. In this application, it provides an improved measure of cellular metabolism by separating [1-13C]-lactate produced in tissue by metabolic conversion from [1-13C]-lactate that has flowed into the tissue or is in the blood. Generally, MAD-STEAM can be applied to any system in which spins undergo a frequency shift.
机译:在这项工作中,我们提出了一种新的MR光谱方法,用于直接观察发生交换,代谢转换或通常在混合时间内发生任何频移的核自旋。与观察这些过程的常规方法(例如交换光谱法(EXSY))不同,这种快速方法仅需一个编码步骤,因此可轻松应用于超极化MR,其中T1衰减和RF激发后磁化强度无法补充。此方法基于受激回波,并结合精确选择的回波时间使用相敏检测,以便将混合时间内生成的自旋与混合前存在的自旋分开。我们称这种方法为“代谢活动分解刺激回波采集模式”或“ MAD-STEAM”。我们已经验证了这种方法,并将其体内应用到正常小鼠和用于观察丙酮酸-乳酸转化的转基因前列腺癌小鼠模型中,该模型已显示在许多肿瘤类型中均升高。在本申请中,它通过将组织中通过代谢转化产生的[1- 13 C]-乳酸从[1- 13 C]-中分离出来,提供了一种改善细胞代谢的方法流入组织或血液中的乳酸。通常,MAD-STEAM可以应用于自旋发生频移的任何系统。

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