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MR Chemical Exchange Imaging with Spin-Lock Technique (CESL): A Theoretical Analysis of Z-spectrum using a Two-Pool R1ρ Relaxation Model beyond the Fast-Exchange Limit

机译:用旋转锁定技术(CESL)MR化学交流映像:使用超越快速交换限制的双池R1ρ松弛模型的Z光谱的理论分析

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摘要

Chemical exchange (CE) process has been exploited as a novel and powerful contrast mechanism for MRI, which is primarily performed in the form of chemical exchange saturation transfer (CEST) imaging. Spin-lock (SL) technique can also be used for CE studies, although traditionally performed and interpreted quite differently from CEST. Chemical exchange imaging with spin-lock technique (CESL), theoretically based on the Bloch-McConnell equations common to CEST, has potentials to be used as an alternative to CEST and to better characterize CE processes from slow and intermediate to fast proton exchange rates through the tuning of spin-lock pulse parameters. In this study, Z-spectrum and asymmetric magnetization transfer ratio (MTRasym) obtained by CESL are theoretically analyzed and numerically simulated using a general two-pool R1ρ relaxation model beyond the fast-exchange limit. The influences of spin-lock parameters, static magnetic field strength B0 and physiological properties on Z-spectrum and MTRasym are quantitatively revealed. Optimization of spin-lock frequency and spin-lock duration for the maximum CESL contrast enhancement is also investigated. Numerical simulation results in this study are compatible with the findings in the existing literatures of CE imaging studies.
机译:化学交换(CE)过程已被开发为MRI的一种新颖而强大的对比机制,该机制主要以化学交换饱和转移(CEST)成像的形式执行。自旋锁定(SL)技术也可以用于CE研究,尽管传统上执行和解释与CEST完全不同。理论上基于CEST常用的Bloch-McConnell方程的自旋锁技术(CESL)进行化学交换成像,有望被用作CEST的替代方法,并更好地表征从慢速,中速到快速质子交换速率的CE过程。自旋锁脉冲参数的调整。在这项研究中,使用普通的两池R1ρ弛豫模型超越了快速交换极限,对CESL获得的Z谱和不对称磁化传递比(MTRasym)进行了理论分析和数值模拟。定量揭示了自旋锁参数,静磁场强度B0和生理特性对Z谱和MTRasym的影响。还研究了自旋锁频率和自旋锁持续时间的优化,以最大程度地增强CESL对比度。这项研究中的数值模拟结果与CE成像研究的现有文献中的发现是一致的。

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