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Characterization of Magnetic Nanoparticles for Magnetic Particle Imaging by Magnetorelaxometry, AC Susceptibility, Magnetic Particle pectroscopy and Static Magnetization Measurements

机译:磁体抑制,交流磁性粒子谱检测磁颗粒成像磁纳米粒子的表征

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To investigate various magnetic nanoparticle samples for their suitability as markers for Magnetic Particle Imaging (MPI), various magnetic techniques can be applied. Whereas Magnetic Particle Spectroscopy (MPS) directly provides the harmonic spectrum for a given excitation frequency and ac field amplitude, for the design of optimal markers, it is important to relate the measured harmonic spectra to specific nanoparticle properties. We have applied fluxgate magnetorelaxometry (MRX), ac susceptibility (ACS) up to 1 MHz, multivariate MPS - varying the excitation field amplitude and frequency as well as the magnitude of a superimposed dc field - and static magnetization measurements for the comprehensive characterization of representative magnetic nanoparticle samples. To distinguish between core and hydrodynamic properties, aqueous suspensions as well as immobilized samples were investigated.
机译:为了研究各种磁性纳米粒子样本,其适用于磁性颗粒成像(MPI)的标志物,可以应用各种磁技术。虽然磁粒子谱(MPS)直接提供给定的激发频率和交流场幅度的谐波谱,但对于最佳标记的设计,重要的是将测量的谐波谱与特定的纳米颗粒性能相关。我们已经将浮动磁体磁化术(MRX),AC敏感度(ACS)施加到1MHz,多变量MPS - 改变激励场幅度和频率以及叠加的DC场和静态磁化测量的幅度,以实现代表的综合表征磁性纳米粒子样品。为了区分核心和流体动力学性质,研究了水性悬浮液以及固定的样品。

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