TY - JOUR
T1 - Multi–dimensional Debye model for nanoparticle magnetization in magnetic particle imaging
AU - Li, Yimeng
AU - Zhang, Peng
AU - Xin, Feng
AU - Hui, Hui
AU - Tian, Jie
N1 - Publisher Copyright:
© 2023 Li et al.; licensee Infinite Science Publishing GmbH.
PY - 2023
Y1 - 2023
N2 - Magnetic particle imaging (MPI) is a new medical modality to safely image the concentration distribution of superparamagnetic iron-oxide nanoparticles (SPIOs). It relies on the nonlinear magnetization response of SPIOs under a time-varying magnetic field to induce an output voltage signal. When the magnetic field is multidimensional, the accuracy of the first-order Debye model decreases in describing the magnetization process. To solve this problem, we propose a multi–dimensional Debye model, which considers each dimensional magnetic field’s contribution to the magnetization of SPIOs. Through various experiments, the proposed multi–dimensional Debye model shows superiority over the first-order Debye model, with a 30% lower root-mean-square error in modeling the magnetization. The multi–dimensional Debye model can accurately analyze the influence of different magnetic fields on the SPIOs. This model can further guide MPI instrument optimization.
AB - Magnetic particle imaging (MPI) is a new medical modality to safely image the concentration distribution of superparamagnetic iron-oxide nanoparticles (SPIOs). It relies on the nonlinear magnetization response of SPIOs under a time-varying magnetic field to induce an output voltage signal. When the magnetic field is multidimensional, the accuracy of the first-order Debye model decreases in describing the magnetization process. To solve this problem, we propose a multi–dimensional Debye model, which considers each dimensional magnetic field’s contribution to the magnetization of SPIOs. Through various experiments, the proposed multi–dimensional Debye model shows superiority over the first-order Debye model, with a 30% lower root-mean-square error in modeling the magnetization. The multi–dimensional Debye model can accurately analyze the influence of different magnetic fields on the SPIOs. This model can further guide MPI instrument optimization.
UR - https://www.scopus.com/pages/publications/85151500363
U2 - 10.18416/IJMPI.2023.2303009
DO - 10.18416/IJMPI.2023.2303009
M3 - 文章
AN - SCOPUS:85151500363
SN - 2365-9033
VL - 9
JO - International Journal on Magnetic Particle Imaging
JF - International Journal on Magnetic Particle Imaging
M1 - 2303009
ER -