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首页> 外文期刊>Journal of magnetic resonance >Gradient-free microfluidic flow labeling using thin magnetic films and remotely detected MRI
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Gradient-free microfluidic flow labeling using thin magnetic films and remotely detected MRI

机译:使用磁性薄膜和远程检测MRI进行无梯度微流标记

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摘要

Nuclear Magnetic Resonance (NMR) and Magnetic Resonance Imaging (MRI) may be employed as noninvasive measurements yielding detailed information about the chemical and physical parameters that define microscale flows. Despite these advantages, magnetic resonance has been difficult to combine with microfluidics, largely due to its low sensitivity when detecting small sample volumes and the difficulty of efficiently addressing individual flow pathways for parallel measurements without utilizing large electric currents to create pulsed magnetic field gradients. Here, we demonstrate that remotely-detected MRI (RD-MRI) employing static magnetic field gradients produced by thin magnetic films can be used to encode flow and overcome some of these limitations. We show how flow path and history can be selected through the use of these thin film labels and through the application of synchronized, frequency-selective pulses. This obviates the need for large eletric currents to produce pulsed magnetic field gradients and may allow for further application of NMR and MRI experiments on microscale devices. (C) 2014 Elsevier Inc. All rights reserved.
机译:核磁共振(NMR)和磁共振成像(MRI)可以用作非侵入性测量,从而产生有关定义微观流量的化学和物理参数的详细信息。尽管具有这些优点,磁共振仍很难与微流控技术相结合,这主要是由于其在检测少量样品时灵敏度低以及难以有效地解决并行测量的单个流路而又不利用大电流来产生脉冲磁场梯度的困难。在这里,我们证明采用由磁性薄膜产生的静态磁场梯度的远程检测MRI(RD-MRI)可用于编码流量并克服其中一些局限性。我们展示了如何通过使用这些薄膜标签以及通过应用同步的频率选择脉冲来选择流动路径和历史。这就消除了需要大电流产生脉冲磁场梯度的需求,并且可以允许在微型设备上进一步应用NMR和MRI实验。 (C)2014 Elsevier Inc.保留所有权利。

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