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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Finite magnetic relaxation in x-space magnetic particle imaging: comparison of measurements and ferrohydrodynamic models
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Finite magnetic relaxation in x-space magnetic particle imaging: comparison of measurements and ferrohydrodynamic models

机译:X空间磁性粒子成像中的有限磁弛豫:测量值和铁流体动力学模型的比较

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摘要

Magnetic particle imaging (MPI) is an emerging tomographic imaging technology that detects magnetic nanoparticle tracers by exploiting their non-linear magnetization properties. In order to predict the behavior of nanoparticles in an imager, it is possible to use a non-imaging MPI relaxometer or spectrometer to characterize the behavior of nanoparticles in a controlled setting. In this paper we explore the use of ferrohydrodynamic magnetization equations for predicting the response of particles in an MPI relaxometer. These include a magnetization equation developed by Shliomis (Sh) which has a constant relaxation time and a magnetization equation which uses a field-dependent relaxation time developed by Martsenyuk, Raikher and Shliomis (MRSh). We compare the predictions from these models with measurements and with the predictions based on the Langevin function that assumes instantaneous magnetization response of the nanoparticles. The results show good qualitative and quantitative agreement between the ferrohydrodynamic models and the measurements without the use of fitting parameters and provide further evidence of the potential of ferrohydrodynamic modeling in MPI.
机译:磁性粒子成像(MPI)是一种新兴的层析成像技术,其通过利用磁性纳米粒子示踪剂的非线性磁化特性来对其进行检测。为了预测成像器中纳米粒子的行为,可以使用非成像MPI弛豫仪或光谱仪来表征受控环境中纳米粒子的行为。在本文中,我们探索使用铁水动力磁化方程来预测MPI弛豫仪中颗粒的响应。这些包括由Shliomis(Sh)开发的具有恒定弛豫时间的磁化方程和使用Martsenyuk,Raikher和Shliomis(MRSh)开发的与磁场有关的弛豫时间的磁化方程。我们将来自这些模型的预测与测量值进行比较,并与基于Langevin函数的预测进行比较,该函数假设纳米粒子的瞬时磁化响应。结果表明,在不使用拟合参数的情况下,铁水动力模型与测量结果之间具有良好的定性和定量一致性,并为MPI中铁水动力模型的潜力提供了进一步的证据。

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