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体内分子间多量子相干图像多阶的同步采集。

Simultaneous acquisition of multiple orders of intermolecular multiple-quantum coherence images in vivo.

作者信息

Shannon Kerry L, Branca Rosa T, Galiana Gigi, Cenzano Silvia, Bouchard Louis-Serge, Soboyejo Winston, Warren Warren S

机构信息

Department of Chemistry, Princeton University, Princeton, NJ 08544, USA.

出版信息

Magn Reson Imaging. 2004 Dec;22(10):1407-12. doi: 10.1016/j.mri.2004.10.019.

Abstract

Until recently, NMR imaging with intermolecular multiple-quantum coherences (iMQCs) has been based on the acquisition of a single echo. In vivo studies of iMQC image contrast would greatly benefit from a method that could acquire several orders of quantum coherence during the same acquisition. This would enable comparison of the image contrast for various orders and eliminate image coregistration problems between scans. It has previously been demonstrated that multiple orders of iMQC images can be simultaneously acquired of a simple phantom. Here, we examine the technique and its effect on biological tissue, both in vivo and in vitro. First, we establish the effectiveness of the iMQC sequence in vivo using earthworms as specimens. We then further show that the multi-CRAZED sequence enhances detection of next generation (nanoparticle) contrast agents on excised tumor tissue.

摘要

直到最近,基于分子间多量子相干(iMQC)的核磁共振成像一直是基于单个回波的采集。对于iMQC图像对比度的体内研究,若能有一种在同一采集过程中获取多个量子相干阶数的方法,将受益匪浅。这将能够比较不同阶数的图像对比度,并消除扫描之间的图像配准问题。此前已经证明,可以同时采集简单模型的多个iMQC图像阶数。在此,我们研究了该技术及其对体内和体外生物组织的影响。首先,我们以蚯蚓为标本,在体内建立了iMQC序列的有效性。然后,我们进一步表明,多CRAZED序列增强了对切除肿瘤组织上的下一代(纳米颗粒)造影剂的检测。

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