| Literature DB >> 24685983 |
Jianhua Lu1, Congbo Cai2, Shuhui Cai3, Zhong Chen1, Jinyuan Zhou4.
Abstract
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 7T 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.Entities:
Keywords: CEST; Image contrast; Intermolecular double-quantum coherence; MRI; Nuclear Overhauser enhancement
Mesh:
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Year: 2014 PMID: 24685983 PMCID: PMC5744861 DOI: 10.1016/j.mri.2014.03.001
Source DB: PubMed Journal: Magn Reson Imaging ISSN: 0730-725X Impact factor: 2.546