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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Imaging pH using the chemical exchange saturation transfer (CEST) MRI: Correction of concomitant RF irradiation effects to quantify CEST MRI for chemical exchange rate and pH.
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Imaging pH using the chemical exchange saturation transfer (CEST) MRI: Correction of concomitant RF irradiation effects to quantify CEST MRI for chemical exchange rate and pH.

机译:使用化学交换饱和转移(CEST)MRI对pH成像:校正伴随的RF辐射效应,以量化CEST MRI的化学交换速率和pH。

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摘要

Chemical exchange saturation transfer (CEST) MRI has been shown capable of detecting dilute labile protons and abnormal tissue glucose/oxygen metabolism, and thus, may serve as a complementary imaging technique to the conventional MRI methods. CEST imaging, however, is also dependent on experimental parameters such as the power, duration, and waveform of the irradiation RF pulse. As a result, its sensitivity and specificity for microenvironment properties such as pH is not optimal. In this study, the dependence of CEST contrast on experimental parameters was solved and an iterative compensation algorithm was proposed that corrects the experimentally measured CEST contrast from the concomitant RF irradiation effects. The proposed algorithm was verified with both numerical simulation and experimental measurements from a tissue-like pH phantom, and showed that pH derived from the compensated CEST imaging agrees reasonably well with pH-electrode measurements within 0.1 pH unit. In sum, our study validates the use of a correction algorithm to compensate CEST imaging from concomitant RF irradiation effects for accurate calibration of the chemical exchange rate, and demonstrates the feasibility of pH imaging with CEST MRI.
机译:已显示化学交换饱和转移(CEST)MRI能够检测稀的不稳定质子和异常的组织葡萄糖/氧气代谢,因此可以作为常规MRI方法的补充成像技术。但是,CEST成像还取决于实验参数,例如辐射RF脉冲的功率,持续时间和波形。结果,其对微环境性质例如pH的敏感性和特异性不是最佳的。在这项研究中,解决了CEST对比度对实验参数的依赖性,并提出了一种迭代补偿算法,该算法从伴随的RF辐射效应中校正了实验测量的CEST对比度。该算法通过数值模拟和组织状pH体模的实验测量得到了验证,结果表明,从补偿CEST成像获得的pH与0.1 pH单位内的pH电极测量相当吻合。总而言之,我们的研究验证了使用校正算法从伴随的RF辐射效应中补偿CEST成像以准确校准化学交换速率,并证明了使用CEST MRI进行pH成像的可行性。

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