CHINESE JOURNAL OF COMPUTATIONAL PHYSICS ›› 2010, Vol. 27 ›› Issue (6): 912-918.

Previous Articles     Next Articles

Analytical Solution of Forward Problem for Magnetic Induction Tomography in a Multi-layer Sphere Brain Model

HE Wei, LI Qian, XU Zheng, ZHU Jinhua, HE Yangguang, WANG Lei   

  1. State Key Laboratory of Power Transmission Equipment & System Security and New Technology, Electrical Engineering College, Chongqing University, Chongqing 400044, China
  • Received:2009-11-19 Revised:2010-03-19 Online:2010-11-25 Published:2010-11-25

Abstract: A 4-layer sphere model of human head is built for the forward problem of magnetic induction tomography.The layers represent the brain,the CFS,the skull,and the scalp respectively.Taking vector magnetic potential as a variable,Helmholtz equation in a spherical coordinates is constructed as a control equation of the forward problem.A variables separation method is used to solve the equations with boundary and interface conditions.Distribution of the magnetic vector potential and eddy current in the model are obtained.Equi-potential lines of the eddy current are given.Influence of frequency and magnitude of the exciting current on the induced voltage is analyzed.The algorithm is validated by solving a forward problem of magnetic induction tomography.It can be used as a fast algorithm to generate sensitivity matrix in an inverse problem.

Key words: magnetic induction tomography, forward problems, analytical solutions, variables separation method

CLC Number: