磁化转移
激发
核磁共振
饱和(图论)
无线电频率
化学
材料科学
磁共振成像
分析化学(期刊)
物理
放射科
计算机科学
医学
量子力学
电信
色谱法
组合数学
数学
作者
Chongxue Bie,Peter C.M. van Zijl,Jiadi Xu,Xiaolei Song,Nirbhay N. Yadav
摘要
Chemical exchange saturation transfer (CEST) MRI has generated great interest for molecular imaging applications because it can image low-concentration solute molecules in vivo with enhanced sensitivity. CEST effects are detected indirectly through a reduction in the bulk water signal after repeated perturbation of the solute proton magnetization using one or more radiofrequency (RF) irradiation pulses. The parameters used for these RF pulses-frequency offset, duration, shape, strength, phase, and interpulse spacing-determine molecular specificity and detection sensitivity, thus their judicious selection is critical for successful CEST MRI scans. This review article describes the effects of applying RF pulses on spin systems and compares conventional saturation-based RF labeling with more recent excitation-based approaches that provide spectral editing capabilities for selectively detecting molecules of interest and obtaining maximal contrast.
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