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Comput Math Methods Med ; 2014: 426902, 2014.
Article in English | MEDLINE | ID: mdl-24527060

ABSTRACT

The Electrical Impedance Tomography (EIT) and electroencephalography (EEG) forward problems in anisotropic inhomogeneous media like the human head belongs to the class of the three-dimensional boundary value problems for elliptic equations with mixed derivatives. We introduce and explore the performance of several new promising numerical techniques, which seem to be more suitable for solving these problems. The proposed numerical schemes combine the fictitious domain approach together with the finite-difference method and the optimally preconditioned Conjugate Gradient- (CG-) type iterative method for treatment of the discrete model. The numerical scheme includes the standard operations of summation and multiplication of sparse matrices and vector, as well as FFT, making it easy to implement and eligible for the effective parallel implementation. Some typical use cases for the EIT/EEG problems are considered demonstrating high efficiency of the proposed numerical technique.


Subject(s)
Electroencephalography/methods , Imaging, Three-Dimensional/methods , Algorithms , Anisotropy , Brain/pathology , Computer Simulation , Finite Element Analysis , Fourier Analysis , Head/physiology , Humans , Image Processing, Computer-Assisted , Models, Theoretical , Poisson Distribution , Software , Surgical Instruments , Titanium/chemistry , White Matter/pathology
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