设为首页 |  加入收藏
首页首页 期刊简介 消息通知 编委会 电子期刊 投稿须知 广告合作 联系我们
三维磁声电成像技术的仿真分析研究

Simulation analysis of 3-D magneto-acoustic-electrical tomography

作者: 王霜  刘国强  夏慧  李士强  黄欣  李艳红                  
单位:                      中国科学院大学(北京100190)        
关键词:                     磁声电成像;互易定理;正问题;声磁耦合          
分类号:
出版年·卷·期(页码):2014·33·3(234-239)
摘要:

目的 磁声电成像技术是一种融合了超声成像和电阻抗成像的新型功能性成像技术,兼具超声成像的高
分辨率和电阻抗成像的高对比度。针对现有研究未涉及声场正问题以及三维成像体的电势差波形变化的情况
,进行分析讨论。方法 在二维成像的基础上,采用有限元和差分的方式研究了声场正问题,并分析了声场
振速的变化趋势。推导了基于互易定理的三维声磁耦合的理论公式,建立数学物理模型并进行了仿真分析。
另外,研究了电势差变化情况以及电极数量对于测量结果的影响。结果 仿真结果和理论分析结果相吻合。
结论 为今后三维磁声电成像实验的顺利进行提供了理论依据。

Objective Magneto-acoustic-electrical tomography(MAET) is a new functional imaging
technique,which possesses high resolution of ultrasound tomography and high contrast of
electrical impedance tomography.The existing research does not involve the forward problem of
sound field and the potential difference waveform change of 3-D imaging volume.This article
analyzes and discusses these problems.Methods Based on the 2-D imaging,this paper studied the
forward problem of sound field with the finite element method and differential mode,and
analyzed the change trends of sound field vibration speed.We deduced the theoretical formulas
of 3-D sound magnetic coupling based on reciprocity theorem and established the 3-D
mathematical and physical model for simulation analysis.In addition,we studied the potential
difference changes and analyzed the effect of the electrode number on the measurement
results.Results The simulation results accorded with the theoretical analysis
results.Conclusions This paper provides a theoretical basis for the successful progress of the
future MAET experiment.

参考文献:

[1]曾小平.磁声电成像方法研究[D].北京:中国科学院电工研究所,2011:3-48.
Zeng Xiaoping.Magnetic acoustic electric lmaging method[D].Beijing:Institute of Electrical
Engineering,Chinese Academy of science ,2011:3-48.
[2]Wen H,Shah J,Balaban RS.Hall Effect Imaging.Biomedical Engineering[J].IEEE Transactions
on,1998,45(1):119-124.
[3]Xu Y,He B.Magneto-acoustic tomography with magnetic lnduction(MAT-MI) [J].Physics in
Medicine and Biology,2005,50(21):5175-5187.
[4]Haider S,Hrbek A,Xu Y.Magneto-acousto-electrical tomography:a potential method for
imaging current density and electrical impedance[J].Physiological Measurement,2008,6
(29):2941-2950.
[5]Xin Huang,Guoqiang Liu,Hui Xia.Study of magneto-acoustic tomography with injecting
current by experiment[J].ICCIA,2012:781-784.
[6]Sun Xiaodong,Zhang Feng,Ma Qingyu,et al.Acoustic dipole radiation based conductivity
image recostruction for magneto-acoustic tomography with magnetic induction[J].Applied
Physics Letters,2012,100(2):241051-241054.
[7]Zhou Lian,Zhu Shanan,He Bin.A three-dimensional bioimpedance imaging algorithm by means
of magneto-acoustic tomography with magnetic induction[J].Chinese Journal of
Electronics,2013,41(2):288-294.
[8]Mariappan L,Bin He.Magneto-acoustic tomography with magnetic induction:bioimepedance
reconstruction through vector source imaging[J].IEEE,2013,32(3):619-627.
[9]Xia Hui,Liu Guoqiang,Zeng Xiaoping.Experimental study of magneto-acousto-electrical
tomography[J].IEEE,2011:1310-1313.
[10]Renzhiglova E,Ivantsiv V,Xu Yuan.Difference frequency magneto-acousto-electrical
tomography(DF-MAET):application of ultrasound-induced radiation force to imaging electrical
current density[J].IEEE,2010,11(57):2391-2401.
[11]Zeng Xiaoping,Liu Guoqiang,Xia Hui,et al.An acoustic characteristic study of magneto-
acousto-electrical tomography[J].ICBEI,2010,20(3):95-98
[12]Costa ELV,Lima RG,Amato MBP.Electrical Impedance Tomography[M].New
York:Springer,2009:394-404.
[13]Ammari H,Bossy E,Garnier J,et al.Acousto-electromagnetic Tomography[J].IEEE,2012,7
(27):231-238.
[14]Xu Y,Haider S,Hrbek A.Magneto-acousto-electrical tomography:a new imaging modality for
electrical impedance[C].ICEBI,2007,17(29):292-295.
[15]Roth BJ,Basser PJ,Wikswo JP.A theoretical model for magneto-acoustic imaging of
bioelectric currents [C].IEEE Transactions on Biomedical Engineering,1994,41(8):723-728.
[16]杜功焕,朱哲民,龚秀芬.声学基础[M].南京:南京大学出版社,2001:168-188.
Du Gonghuan,Zhu Zhemin,Gong Xiufen.Acoustic Foundation[M].Nanjing:Nanjing University
Press,2001:168-180.

服务与反馈:
文章下载】【加入收藏
提示:您还未登录,请登录!点此登录
 
友情链接  
地址:北京安定门外安贞医院内北京生物医学工程编辑部
电话:010-64456508  传真:010-64456661
电子邮箱:llbl910219@126.com