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Enhanced Methods to Estimate the Efficiency of Magnetic Nanoparticles in Imaging

机译:估计磁性纳米粒子成像效率的增强方法

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摘要

Magnetic resonance imaging (MRI) and magnetic particle imaging (MPI) are powerful methods in the early diagnosis of diseases. Both imaging techniques utilize magnetic nanoparticles that have high magnetic susceptibility, strong saturation magnetization, and no coercivity. FeraSpinTM R and its fractionated products have been studied for their imaging performances; however, a detailed magnetic characterization in their immobilized state is still lacking. This is particularly important for applications in MPI that require fixation of magnetic nanoparticles with the target cells or tissues. We examine the magnetic properties of immobilized FeraSpinTM R, its size fractions, and Resovist®, and use the findings to demonstrate which magnetic properties best predict performance. All samples show some degree of oxidation to hematite, and magnetic interaction between the particles, which impact negatively on image performance of the materials. MRI and MPI performance show a linear dependency on the slope of the magnetization curve, i.e., initial susceptibility, and average blocking temperature. The best performance of particles in immobilized state for MPI is found for particle sizes close to the boundary between superparamagnetic (SP) and magnetically ordered, in which only Néel relaxation is important. Initial susceptibility and bifurcation temperature are the best indicators to predict MRI and MPI performance.
机译:磁共振成像(MRI)和磁粉成像(MPI)是疾病早期诊断的有效方法。两种成像技术都利用具有高磁化率,强饱和磁化强度和无矫顽力的磁性纳米颗粒。研究了FeraSpin TM R及其分馏产物的成像性能。然而,仍缺乏固定状态下的详细磁特性。这对于MPI中要求磁性纳米颗粒与目标细胞或组织固定的应用特别重要。我们研究了固定化的FeraSpin TM R的磁性能,其尺寸分数和Resovist ®,并使用这些发现来证明哪种磁性能最能预测性能。所有样品均显示出一定程度的氧化成赤铁矿以及颗粒之间的磁性相互作用,这对材料的图像性能产生负面影响。 MRI和MPI性能显示出对磁化曲线斜率的线性依赖性,即,初始磁化率和平均阻塞温度。对于接近超顺磁性(SP)和磁性有序边界(其中仅Néel弛豫很重要)的粒径,发现了MPI固定状态下的最佳性能。初始磁化率和分叉温度是预测MRI和MPI性能的最佳指标。

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