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优化脉冲化学交换饱和传递成像序列。

Optimizing pulsed-chemical exchange saturation transfer imaging sequences.

机构信息

Vanderbilt University Institute of Imaging Science, Nashville, Tennessee 37232-2310, USA.

出版信息

Magn Reson Med. 2011 Oct;66(4):1100-8. doi: 10.1002/mrm.22884. Epub 2011 Mar 22.

Abstract

Chemical exchange saturation transfer (CEST) provides a new imaging contrast mechanism sensitive to labile proton exchange. Pulsed-CEST imaging is better suited to the hardware constraints on clinical imaging systems when compared with traditional continuous wave-CEST imaging methods. However, designing optimum pulsed-CEST imaging sequences entails complicated and time-consuming numerical integrations. In this work, a simplified and computationally efficient technique is provided to optimize the pulsed-CEST imaging sequence. An analysis was performed of the optimal average irradiation power and the optimal irradiation flip angle as a function of the acquisition parameters and sample properties in both a two-pool model and a three-pool model of endogenous amine exchange. Key simulated and experimental results based on a creatine/agar tissue phantom show that (1) the average irradiation power is a more meaningful sequence metric than is the average irradiation field amplitude, (2) the optimal average powers for continuous wave and pulsed-CEST imaging are approximately equal to each other for a relevant range of solute frequency offsets, exchange rates, and concentrations, (3) an irradiation flip angle of 180° is optimal or near optimal, independent of the other acquisition parameters and the sample properties, and (4) higher duty cycles yield higher CEST contrast.

摘要

化学交换饱和传递(CEST)提供了一种新的成像对比机制,对不稳定质子交换敏感。与传统的连续波 CEST 成像方法相比,脉冲 CEST 成像是更适合临床成像系统硬件限制的方法。然而,设计最佳的脉冲 CEST 成像序列需要复杂且耗时的数值积分。在这项工作中,提供了一种简化且计算效率高的技术来优化脉冲 CEST 成像序列。在两种内源性胺交换的双池模型和三池模型中,分析了最优平均辐照功率和最优辐照翻转角作为采集参数和样品特性的函数。基于肌酸/琼脂组织仿体的关键模拟和实验结果表明:(1)平均辐照功率是比平均辐照场幅度更有意义的序列度量;(2)在相关的溶质频率偏移、交换率和浓度范围内,连续波和脉冲 CEST 成像的最优平均功率大致相等;(3)无论其他采集参数和样品特性如何,180°的辐照翻转角是最优或接近最优的;(4)更高的占空比会产生更高的 CEST 对比。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c5c8/3151337/aecbf43db11a/nihms269507f1.jpg

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