Them Kolja
Section for Biomedical Imaging, University Medical Center Hamburg-Eppendorf, Martinistrasse 52, 20246, Hamburg. Institute for Biomedical Imaging, Hamburg University of Technology, Schwarzenbergstrasse 95, 21073 Hamburg, Germany.
Phys Med Biol. 2017 Jun 14;62(14):5623-5639. doi: 10.1088/1361-6560/aa70ca.
Magnetic dipole-dipole (MDD) interactions between iron oxide nanoparticles can influence the sensitivity, image resolution and quantification of magnetic particle imaging (MPI). For the first time, the Landau-Lifshitz-Gilbert equation (LLG) for MDD interactions has been solved to investigate the effect of MDD interactions on the MPI spectrum. It was found that at concentrations above 39 mmol(Fe) l, MDD interactions significantly influence MPI spectra. This influence increases with increasing harmonics, which means first harmonics should be preferred for iron quantification. Since ≈10 particles are neglected in the LLG compared to in an MPI experiment, the calculated limit below which MDD interactions can be neglected is only a bound. The true limit is therefore below the calculated limit of 39 mmol(Fe) l, because all other neglected particles also contribute to deviations in the MPI spectra via MDD interactions. Therefore, a quantum mechanical bound on the influence of MDD interactions is calculated, including up to 10 particles. Analysis of the bound as a function of the particle number provides a valuable insight into the influence of the large number of particles neglected in numerical simulations. Both results are compared with concentrations in biomedical MPI experiments. We conclude that the standard approximation of an absence of MDD interactions in MPI experiments must be handled more carefully. Our method of incorporating MDD interactions into the LLG can be easily implemented as part of model-based reconstruction to increase the sensitivity, image resolution and quantitative tracer detection during MPI.
氧化铁纳米颗粒之间的磁偶极-偶极(MDD)相互作用会影响磁粒子成像(MPI)的灵敏度、图像分辨率和定量分析。首次求解了用于MDD相互作用的朗道-栗弗席兹-吉尔伯特方程(LLG),以研究MDD相互作用对MPI谱的影响。研究发现,当浓度高于39 mmol(Fe)/l时,MDD相互作用会显著影响MPI谱。这种影响随着谐波次数的增加而增大,这意味着在进行铁定量分析时应优先选择基波。由于与MPI实验相比,LLG中忽略了约10个粒子,因此计算得出的可忽略MDD相互作用的浓度下限只是一个界限。所以,实际下限低于计算得出的39 mmol(Fe)/l,因为所有其他被忽略的粒子也会通过MDD相互作用导致MPI谱出现偏差。因此,计算了包含多达10个粒子的MDD相互作用影响的量子力学界限。对该界限作为粒子数函数的分析,为深入了解数值模拟中大量被忽略粒子的影响提供了有价值的见解。将这两个结果与生物医学MPI实验中的浓度进行了比较。我们得出结论,在MPI实验中忽略MDD相互作用的标准近似必须更谨慎地处理。我们将MDD相互作用纳入LLG的方法可以很容易地作为基于模型重建的一部分来实现,以提高MPI过程中的灵敏度、图像分辨率和定量示踪剂检测能力。