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In-Vivo Imaging of Cell Migration Using Contrast Enhanced MRI and SVM Based Post-Processing

机译:使用基于增强型MRI和SVM的后处理技术对细胞迁移进行活体内成像

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摘要

The migration of cells within a living organism can be observed with magnetic resonance imaging (MRI) in combination with iron oxide nanoparticles as an intracellular contrast agent. This method, however, suffers from low sensitivity and specificty. Here, we developed a quantitative non-invasive in-vivo cell localization method using contrast enhanced multiparametric MRI and support vector machines (SVM) based post-processing. Imaging phantoms consisting of agarose with compartments containing different concentrations of cancer cells labeled with iron oxide nanoparticles were used to train and evaluate the SVM for cell localization. From the magnitude and phase data acquired with a series of T2*-weighted gradient-echo scans at different echo-times, we extracted features that are characteristic for the presence of superparamagnetic nanoparticles, in particular hyper- and hypointensities, relaxation rates, short-range phase perturbations, and perturbation dynamics. High detection quality was achieved by SVM analysis of the multiparametric feature-space. The in-vivo applicability was validated in animal studies. The SVM detected the presence of iron oxide nanoparticles in the imaging phantoms with high specificity and sensitivity with a detection limit of 30 labeled cells per mm3, corresponding to 19 μM of iron oxide. As proof-of-concept, we applied the method to follow the migration of labeled cancer cells injected in rats. The combination of iron oxide labeled cells, multiparametric MRI and a SVM based post processing provides high spatial resolution, specificity, and sensitivity, and is therefore suitable for non-invasive in-vivo cell detection and cell migration studies over prolonged time periods.
机译:可以通过磁共振成像(MRI)结合氧化铁纳米颗粒作为细胞内造影剂来观察生物体内细胞的迁移。但是,该方法的灵敏度和特异性低。在这里,我们开发了一种基于对比度增强的多参数MRI和基于支持向量机(SVM)的后处理定量非侵入性体内细胞定位方法。由琼脂糖构成的成像体模以及含有不同浓度癌细胞的隔室(用氧化铁纳米粒子标记)被用于训练和评估SVM的细胞定位。从使用一系列 T 2 * 加权梯度回波扫描在不同回波时间下,我们提取了特征超顺磁性纳米粒子的存在,特别是超强度和低强度,弛豫率,短程相位扰动和扰动动力学。通过对多参数特征空间的SVM分析,可以实现较高的检测质量。在动物研究中证实了体内适用性。 SVM以高特异性和高灵敏度检测出成像体模中氧化铁纳米颗粒的存在,检测极限为每mm 3 30个标记细胞,相当于19μM氧化铁。作为概念验证,我们应用了该方法来追踪注射在大鼠中的标记癌细胞的迁移。氧化铁标记的细胞,多参数MRI和基于SVM的后处理的结合提供了较高的空间分辨率,特异性和敏感性,因此适用于长时间内的非侵入性体内细胞检测和细胞迁移研究。

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