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摘要:
Magneto–acoustic tomography with magnetic induction (MAT-MI) is a multiphysics coupled imaging technique that is combined with electrical impedance tomography and ultrasound imaging. In order to study the influence of adding magnetic nanoparticles as a contrast agent for MAT-MI on its physical process, firstly, we analyze and compare the elec-tromagnetic and acoustical properties of MAT-MI theoretically before and after adding magnetic nanoparticles, and then construct a two-dimensional (2D) planar model. Under the guidance of space-time separation theory, we determine the reasonable simulation conditions and solve the electromagnetic field and sound field physical processes in the two modes by using the finite element method. The magnetic flux density, sound pressure distribution, and related one-dimensional (1D), 2D, and three-dimensional(3D) images are obtained. Finally, we make a qualitative and quantitative analysis based on the theoretical and simulation results. The research results show that the peak time of the time item separated from the sound source has a corresponding relationship with the peak time of the sound pressure signal. At this moment, MAMPT-MI produces larger sound pressure signals, and the sound pressure distribution of the MAMPT-MI is more uniform, which facilitates the detection and completion of sound source reconstruction. The research results may lay the foundation for the MAT-MI of magnetically responsive nanoparticle in subsequent experiments and even clinical applications.
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篇名 Simulation research on effect of magnetic nanoparticles on physical process of magneto–acoustic tomography with magnetic induction
来源期刊 中国物理B(英文版) 学科
关键词 magneto–acoustic tomography with magnetic induction magnetic nanoparticles magnetic flux density sound pressure
年,卷(期) 2018,(10) 所属期刊栏目
研究方向 页码范围 314-322
页数 9页 分类号
字数 语种 英文
DOI 10.1088/1674-1056/27/10/104302
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magneto–acoustic tomography with magnetic induction
magnetic nanoparticles
magnetic flux density
sound pressure
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中国物理B(英文版)
月刊
1674-1056
11-5639/O4
北京市中关村中国科学院物理研究所内
eng
出版文献量(篇)
17050
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0
总被引数(次)
27962
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