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Chemical exchange saturation transfer MRI using intermolecular double-quantum coherences with multiple refocusing pulses

机译:使用分子间双量子相干和多个重聚焦脉冲进行化学交换饱和转移MRI

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摘要

Chemical exchange saturation transfer (CEST) provides a new type of image contrast in MRI. Due to the intrinsically low CEST effect, new and improved experimental techniques are required to achieve reliable and quantitative CEST images. In the present work, we proposed a novel and more sensitive CEST acquisition approach, based on the intermolecular double-quantum coherence with a module of multiple refocusing pulses (iDQC-MRP). Experiments were performed on creatine and egg white phantoms using a Varian 7 T animal MRI scanner. The iDQC-MRP CEST technique showed a substantial enhancement in CEST and nuclear Overhauser enhancement (NOE) signal intensities, compared to the standard single-quantum coherence approach. In addition, the iDQC-MRP approach increased the signal-to-noise ratio of acquired saturation images, compared to the conventional iDQC approach. The new iDQC-MRP CEST sequence provides a promising way for exploiting in vivo CEST and NOE imaging applications.
机译:化学交换饱和转移(CEST)在MRI中提供了一种新型的图像对比度。由于本质上CEST效果低,因此需要新的改进的实验技术来获得可靠且定量的CEST图像。在当前的工作中,我们基于分子间双量子相干和多个重聚焦脉冲(iDQC-MRP)模块,提出了一种新颖且更灵敏的CEST采集方法。使用Varian 7 T动物MRI扫描仪对肌酸和蛋清体模进行了实验。与标准单量子相干方法相比,iDQC-MRP CEST技术显示出CEST和核Overhauser增强(NOE)信号强度的显着增强。此外,与传统的iDQC方法相比,iDQC-MRP方法提高了所获取饱和度图像的信噪比。新的iDQC-MRP CEST序列为利用体内CEST和NOE成像应用提供了一种有前途的方法。

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