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首页> 外文期刊>Wiley interdisciplinary reviews. Nanomedicine and nanobiotechnology >Magnetic resonance relaxation induced by superparamagnetic particles used as contrast agents in magnetic resonance imaging: a theoretical review
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Magnetic resonance relaxation induced by superparamagnetic particles used as contrast agents in magnetic resonance imaging: a theoretical review

机译:由超顺磁性颗粒诱导的磁共振弛豫用作磁共振成像中的造影剂:一个理论综述

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Superparamagnetic nanoparticles are used as contrast agents in magnetic resonance imaging and allow, for example, the detection of tumors or the tracking of stem cells in vivo . By producing magnetic inhomogeneities, they influence the nuclear magnetic relaxation times, which results in a darkening, on the image, of the region containing these particles. A great number of studies have been devoted to their magnetic properties, to their synthesis and to their influence on nuclear magnetic relaxation. The theoretical and fundamental understanding of the behavior of these particles is a necessary step in predicting their efficiency as contrast agents, or to be able to experimentally obtain some of their properties from a nuclear magnetic resonance measurement. Many relaxation models have been published, and choosing one of them is not always easy, many parameters and conditions have to be taken into account. Relaxation induced by superparamagnetic particles is generally attributed to an outersphere relaxation mechanism. Each model can only be used under specific conditions (motional averaging regime, static regime, high magnetic field, etc.) or for a particular sequence (Carr‐Purcell‐Meiboom‐Gill, spin echo, free‐induction decay, nuclear magnetic relaxation dispersion profile, etc.). The parameters included in the equations must be carefully interpreted. In some more complex conditions, simulations are necessary to be able to predict the relaxation rates. A good agreement is usually observed between the theoretical predictions and the experimental results, although some data still cannot be fully understood, such as the dependence of the transverse relaxation on the magnetic field. WIREs Nanomed Nanobiotechnol 2017, 9:e1468. doi: 10.1002/wnan.1468 For further resources related to this article, please visit the WIREs website .
机译:超顺磁性纳米颗粒用作磁共振成像中的造影剂,并且例如允许检测肿瘤或体内干细胞的跟踪。通过产生磁性不均匀性,它们影响核磁弛豫时间,这导致含有这些颗粒的区域的图像上的变暗。大量的研究已经致力于它们的磁性,并对它们的合成以及它们对核磁松弛的影响。对这些颗粒的行为的理论和基本的理解是预测其作为造影剂的效率的必要步骤,或者能够通过核磁共振测量实验地获得其一些性质。许多放松模型已发布,选择其中一个并不总是容易的,必须考虑许多参数和条件。超顺磁性颗粒引起的放松通常归因于远距离放松机制。每个模型只能在特定条件下使用(动态平均值,静态制度,高磁场等)或特定顺序(Carr-purcell-meiboom-gill,旋转回波,自由诱导衰减,核磁弛豫分散配置文件等)。必须仔细解释等式中包含的参数。在一些更复杂的条件下,仿真是能够预测放松率的必要条件。在理论上预测和实验结果之间通常观察到良好的一致性,尽管仍然无法完全理解一些数据,例如横向松弛对磁场的依赖性。电线纳米纳米二极管2017,9:E1468。 DOI:10.1002 / WNAN.1468有关本文相关的更多资源,请访问电线网站。

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