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本文引用的文献

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Iron(II) PARACEST MRI contrast agents.亚铁(II) 类 PARACEST MRI 对比剂。
J Am Chem Soc. 2011 Sep 14;133(36):14154-6. doi: 10.1021/ja204297z. Epub 2011 Aug 18.
2
Quantitative separation of CEST effect from magnetization transfer and spillover effects by Lorentzian-line-fit analysis of z-spectra.通过 z 谱的洛伦兹线拟合分析定量分离 CEST 效应与磁化传递和溢出效应。
J Magn Reson. 2011 Aug;211(2):149-55. doi: 10.1016/j.jmr.2011.05.001. Epub 2011 May 15.
3
Chemical exchange saturation transfer (CEST): what is in a name and what isn't?化学交换饱和传递(CEST):名字里有什么,又没有什么?
Magn Reson Med. 2011 Apr;65(4):927-48. doi: 10.1002/mrm.22761. Epub 2011 Feb 17.
4
Europium(III) DOTA-derivatives having ketone donor pendant arms display dramatically slower water exchange.具有酮供体侧臂的铕(III)DOTA 衍生物显示出明显较慢的水交换。
Inorg Chem. 2011 Mar 7;50(5):1648-55. doi: 10.1021/ic101856d. Epub 2011 Feb 9.
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Advances in metal-based probes for MR molecular imaging applications.基于金属的探针在磁共振分子成像应用中的进展。
Curr Med Chem. 2010;17(31):3684-700. doi: 10.2174/092986710793213823.
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A concentration-independent method to measure exchange rates in PARACEST agents.一种浓度无关的方法来测量 PARACEST 试剂中的交换率。
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Indirect detection of labile solute proton spectra via the water signal using frequency-labeled exchange (FLEX) transfer.通过使用频标交换(FLEX)转移,经由水信号间接检测不稳定溶质质子谱。
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Pushing the sensitivity envelope of lanthanide-based magnetic resonance imaging (MRI) contrast agents for molecular imaging applications.推动基于镧系元素的磁共振成像(MRI)造影剂在分子成像应用中的灵敏度极限。
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Responsive MRI agents for sensing metabolism in vivo.用于体内代谢传感的响应性磁共振成像造影剂。
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Osmotically shrunken LIPOCEST agents: an innovative class of magnetic resonance imaging contrast media based on chemical exchange saturation transfer.渗透收缩型脂质CEST剂:一类基于化学交换饱和转移的创新型磁共振成像造影剂。
Chemistry. 2009;15(6):1440-8. doi: 10.1002/chem.200801766.

利用频率标记交换传递,在检测 ParaCEST 试剂时,从交换传递效应中分离出常规磁化传递效应。

Using frequency-labeled exchange transfer to separate out conventional magnetization transfer effects from exchange transfer effects when detecting ParaCEST agents.

机构信息

University of Texas Southwestern Medical Center, Dallas, TX, USA.

出版信息

Magn Reson Med. 2012 Apr;67(4):906-11. doi: 10.1002/mrm.24161. Epub 2012 Jan 27.

DOI:10.1002/mrm.24161
PMID:22287162
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3306536/
Abstract

Paramagnetic chemical exchange saturation transfer agents combine the benefits of a large chemical shift difference and a fast exchange rate for sensitive MRI detection. However, the in vivo detection of these agents is hampered by the need for high B(1) fields to allow sufficiently fast saturation before exchange occurs, thus causing interference of large magnetization transfer effects from semisolid macromolecules. A recently developed approach named frequency-labeled exchange transfer utilizes excitation pulses instead of saturation pulses for detecting the exchanging protons. Using solutions and gel phantoms containing the europium (III) complex of DOTA tetraglycinate (EuDOTA-(gly)(-) (4) ), it is shown that frequency-labeled exchange transfer allows the separation of chemical exchange effects and magnetization transfer (MT) effects in the time domain, therefore allowing the study of the individual resonance of rapidly exchanging water molecules (k(ex) >10(4) s(-1) ) without interference from conventional broad-band MT.

摘要

顺磁化学交换饱和转移试剂结合了大化学位移差和快速交换率的优点,可用于敏感的 MRI 检测。然而,这些试剂的体内检测受到需要高 B1 场的限制,以便在交换发生之前允许足够快的饱和,从而导致来自半固态大分子的大磁化转移效应的干扰。最近开发的一种名为频率标记交换转移的方法,使用激发脉冲而不是饱和脉冲来检测交换质子。使用含有 DOTA 四甘氨酸铕(III)配合物(EuDOTA-(gly)-(4))的溶液和凝胶模型,结果表明,频率标记交换转移允许在时域中分离化学交换效应和磁化转移(MT)效应,因此允许研究快速交换水分子的单个共振(kex>10(4) s(-1)),而不会受到传统宽带 MT 的干扰。