Ludwig Frank, Remmer Hilke, Kuhlmann Christian, Wawrzik Thilo, Arami Hamed, Ferguson R Mathew, Krishnan Kannan M
Institute of Electrical Measurement and Fundamental Electrical Engineering, TU, Braunschweig, Hans-Sommer-Str. 66, D-38106 Braunschweig, Germany.
Department of Materials Science & Engineering, Box 352120, University of Washington, Seattle, WA98195, USA.
J Magn Magn Mater. 2014 Jun 1;360:169-173. doi: 10.1016/j.jmmm.2014.02.020.
Sensitivity and spatial resolution in Magnetic Particle Imaging are affected by magnetic properties of the nanoparticle tracers used during imaging. Here, we have carried out a comprehensive magnetic characterization of single-core iron oxide nanoparticles that were designed for MPI. We used ac susceptometry, fluxgate magnetorelaxometry, and magnetic particle spectroscopy to evaluate the tracer's magnetic core size, hydrodynamic size, and magnetic anisotropy. Our results present a self-consistent set of magnetic and structural parameters for the tracers that is consistent with direct measurements of size using transmission electron microscopy and dynamic light scattering and that can be used to better understand their MPI performance.
磁粒子成像中的灵敏度和空间分辨率受成像过程中使用的纳米颗粒示踪剂的磁性影响。在此,我们对专为磁粒子成像设计的单核氧化铁纳米颗粒进行了全面的磁性表征。我们使用交流磁化率测量法、磁通门磁弛豫测量法和磁粒子光谱法来评估示踪剂的磁芯尺寸、流体动力学尺寸和磁各向异性。我们的结果给出了一组自洽的示踪剂磁性和结构参数,这些参数与使用透射电子显微镜和动态光散射对尺寸的直接测量结果一致,并且可用于更好地理解它们的磁粒子成像性能。
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