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Optimization of iron oxide nanoparticle detection using ultrashort echo time pulse sequences: Comparison of T1, T2*, and synergistic T1 − T2* contrast mechanisms

机译:使用超短回波时间脉冲序列优化氧化铁纳米粒子检测:T1,T2 *和协同T1-T2 *对比机制的比较

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摘要

Iron oxide nanoparticles (IONPs) are used in various MRI applications as negative contrast agents. A major challenge is to distinguish regions of signal void due to IONPs from those due to low signal tissues or susceptibility artifacts. To overcome this limitation, several positive contrast strategies have been proposed. Relying on IONP T1 shortening effects to generate positive contrast is a particularly appealing strategy because it should provide additional specificity when associated with the usual negative contrast from effective transverse relaxation time (T2*) effects. In this article, ultrashort echo time imaging is shown to be a powerful technique which can take full advantage of both contrast mechanisms. Methods of comparing T1 and T2* contrast efficiency are described and general rules that allow optimizing IONP detection sensitivity are derived. Contrary to conventional wisdom, optimizing T1 contrast is often a good strategy for imaging IONPs. Under certain conditions, subtraction of a later echo signal from the ultrashort echo time signal not only improves IONP specificity by providing long T2* background suppression but also increases detection sensitivity, as it enables a synergistic combination of usually antagonist T1 and T2* contrasts. In vitro experiments support our theory, and a molecular imaging application is demonstrated using tumor-targeted IONPs in vivo. Magn Reson Med, 2011. © 2011 Wiley-Liss, Inc.
机译:氧化铁纳米粒子(IONPs)在各种MRI应用中用作负对比剂。一个主要的挑战是区分由于IONP引起的信号无效区域与由于信号组织低或易受伪影影响的那些区域。为了克服该限制,已经提出了几种积极的对比策略。依靠IONP T 1 缩短效应来产生正反差是一种特别吸引人的策略,因为当与有效横向弛豫时间(T 2 *)效果。在本文中,超短回波时间成像被证明是一种可以充分利用两种对比机制的强大技术。描述了比较T 1 和T 2 *对比效率的方法,并推导了允许优化IONP检测灵敏度的一般规则。与传统观点相反,优化T 1 对比度通常是对IONP成像的好策略。在某些条件下,从超短回波时间信号中减去较晚的回波信号,不仅可以通过提供长的T 2 *背景抑制来提高IONP特异性,而且还可以提高检测灵敏度,因为它可以实现通常的协同组合。拮抗剂T 1 和T 2 *的对比。体外实验支持我们的理论,并且在体内使用靶向肿瘤的IONPs证明了分子成像应用。 Magn Reson Med,2011年。©2011 Wiley-Liss,Inc.。

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  • 来源
    《Magnetic Resonance in Medicine》 |2011年第6期|p.1|共1页
  • 作者单位

    Department of Radiology, University of California, San Diego, California, USA;

    Department of Radiology, University of California, San Diego, California, USA;

    Vascular Mapping Laboratory, Center for Nanomedicine, Sanford-Burnham Medical Research Institute at UCSB, University of California, Santa Barbara, California, USA;

    Vascular Mapping Laboratory, Center for Nanomedicine, Sanford-Burnham Medical Research Institute at UCSB, University of California, Santa Barbara, California, USA;

    Vascular Mapping Laboratory, Center for Nanomedicine, Sanford-Burnham Medical Research Institute at UCSB, University of California, Santa Barbara, California, USA;

    Vascular Mapping Laboratory, Center for Nanomedicine, Sanford-Burnham Medical Research Institute at UCSB, University of California, Santa Barbara, California, USA;

    Department of Radiology, University of California, San Diego, California, USA;

    Department of Radiology, University of California, San Diego, California, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    UTE; iron oxide nanoparticle; sequence optimization; positive contrast;

    机译:UTE;氧化铁纳米粒子;序列优化;正对比度;

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