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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Susceptibility gradient mapping (SGM): a new postprocessing method for positive contrast generation applied to superparamagnetic iron oxide particle (SPIO)-labeled cells.
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Susceptibility gradient mapping (SGM): a new postprocessing method for positive contrast generation applied to superparamagnetic iron oxide particle (SPIO)-labeled cells.

机译:磁化率梯度映射(SGM):一种应用于超顺磁性氧化铁颗粒(SPIO)标记的细胞的用于产生正对比度的新后处理方法。

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摘要

Local susceptibility gradients result in a dephasing of the precessing magnetic moments and thus in a fast decay of the NMR signals. In particular, cells labeled with superparamagnetic iron oxide particles (SPIOs) induce hypointensities, making the in vivo detection of labeled cells from such a negative image contrast difficult. In this work, a new method is proposed to selectively turn this negative contrast into a positive contrast. The proposed method calculates the susceptibility gradient and visualizes it in a parametric map directly from a regular gradient-echo image dataset. The susceptibility gradient map is determined in a postprocessing step, requiring no dedicated pulse sequences or adaptation of the sequence before and during image acquisition. Phantom experiments demonstrated that local susceptibility differences can be quantified. In vivo experiments showed the feasibility of the method for tracking of SPIO-labeled cells. The method bears the potential also for usage in other applications, including the detection of contrast agents and interventional devices as well as metal implants.
机译:局部磁化率梯度导致进动磁矩移相,从而导致NMR信号快速衰减。特别是,用超顺磁性氧化铁颗粒(SPIO)标记的细胞会诱导低强度,从而难以从这种负像对比度进行体内检测标记的细胞。在这项工作中,提出了一种新的方法来有选择地将这种负对比度变成正对比度。所提出的方法计算磁化率梯度,并直接从常规梯度回波图像数据集中将其可视化在参数图中。磁化率梯度图是在后处理步骤中确定的,不需要专用的脉冲序列或在图像获取之前和期间不需要序列的适应。幻影实验表明可以量化局部磁化率差异。体内实验显示了该方法用于追踪SPIO标记的细胞的可行性。该方法也具有在其他应用中使用的潜力,包括检测造影剂和介入设备以及金属植入物。

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