Forward problem solution for electrical conductivity imaging via contactless measurements

被引:21
作者
Gençer, NG [1 ]
Tek, MN [1 ]
机构
[1] Middle E Tech Univ, Dept Elect & Elect Engn, TR-06531 Ankara, Turkey
关键词
D O I
10.1088/0031-9155/44/4/009
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
The forward problem of anew medical imaging system is analysed in this study. This system uses magnetic excitation to induce currents inside a conductive body and measures the magnetic fields of the induced currents. The forward problem, that is determining induced currents in the conductive body and their magnetic fields, is formulated. For a general solution of the forward problem, the finite element method (FEM) is employed to evaluate the scalar potential distribution. Thus, inhomogeneity and anisotropy of conductivity is taken into account for the FEM solutions. An analytical solution for the scalar potential is derived for homogeneous conductive spherical objects in order to test FEM solutions. It is observed that the peak error in FEM solutions is less than 2%. The numerical system is used to reveal the characteristics of the measurement system via simulations. Currents are induced in a 9 x 9 x 5 cm body of conductivity 0.2 S m(-1) by circular coils driven sinusoidally. It is found that a 1 cm shift in the perturbation depth reduces the field magnitudes to approximately one-tenth. In addition, the distance between extrema increases. Further simulations carried out using different coil configurations revealed the performance of the method and provided a design perspective for a possible data acquisition system.
引用
收藏
页码:927 / 940
页数:14
相关论文
共 19 条
[1]   IMAGING SPATIAL DISTRIBUTIONS OF RESISTIVITY USING APPLIED POTENTIAL TOMOGRAPHY [J].
BARBER, CC ;
BROWN, BH ;
FREESTON, IL .
ELECTRONICS LETTERS, 1983, 19 (22) :933-935
[2]   APPLIED POTENTIAL TOMOGRAPHY [J].
BARBER, DC ;
BROWN, BH .
JOURNAL OF PHYSICS E-SCIENTIFIC INSTRUMENTS, 1984, 17 (09) :723-733
[3]   Imaging with electricity: Report of the European Concerted Action on Impedance Tomography [J].
Boone, K ;
Barber, D ;
Brown, B .
JOURNAL OF MEDICAL ENGINEERING & TECHNOLOGY, 1997, 21 (06) :201-232
[4]   IMPEDANCE IMAGING USING INDUCED CURRENTS [J].
FREESTON, IL ;
TOZER, RC .
PHYSIOLOGICAL MEASUREMENT, 1995, 16 :A257-A266
[5]   Electrical impedance tomography: Induced-current imaging achieved with a multiple coil system [J].
Gencer, NG ;
Ider, YZ ;
Williamson, SJ .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1996, 43 (02) :139-149
[6]   ELECTRICAL-IMPEDANCE TOMOGRAPHY USING INDUCED CURRENTS [J].
GENCER, NG ;
KUZUOGLU, M ;
IDER, YZ .
IEEE TRANSACTIONS ON MEDICAL IMAGING, 1994, 13 (02) :338-350
[7]  
GENCER NG, 1999, IN PRESS TURKISH J E
[8]  
GHAHARY A, 1990, ELECTRICAL IMPEDANCE, P58
[9]   A NEW TECHNIQUE FOR LINE INTERFERENCE MONITORING AND REDUCTION IN BIOPOTENTIAL AMPLIFIERS [J].
IDER, YZ ;
KOYMEN, H .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1990, 37 (06) :624-631
[10]   DETERMINATION OF THE BOUNDARY OF AN OBJECT INSERTED INTO A WATER-FILLED CYLINDER [J].
IDER, YZ ;
NAKIBOGLU, B ;
KUZUOGLU, M ;
GENCER, NG .
CLINICAL PHYSICS AND PHYSIOLOGICAL MEASUREMENT, 1992, 13 :151-154