Literature DB >> 9444836

A new three-dimensional finite-difference bidomain formulation for inhomogeneous anisotropic cardiac tissues.

H I Saleheen1, K T Ng.   

Abstract

Bidomain modeling of cardiac tissues provides important information about various complex cardiac activities. The cardiac tissue consists of interconnected cells which form fiber-like structures. The fibers are arranged in different orientations within discrete layers or sheets in the tissue, i.e., the fibers within the tissue are rotated. From a mathematical point of view, this rotation corresponds to a general anisotropy in the tissue's conductivity tensors. Since the rotation angle is different at each point, the anisotropic conductivities also vary spatially. Thus, the cardiac tissue should be viewed as an inhomogeneous anisotropic structure. In most of the previous bidomain studies, the fiber rotation has not been considered, i.e., the tissue has been modeled as a homogeneous orthotropic medium. In this paper, we describe a new finite-difference bidomain formulation which accounts for the fiber rotation in the cardiac tissue and hence allows a more realistic modeling of the cardiac tissue. The formulation has been implemented on the data-parallel CM-5 which provides the computational power and the memory required for solving large bidomain problems. Details of the numerical formulation are presented together with its validation by comparing numerical and analytical results. Some computational performance results are also shown. In addition, an application of this new formulation to provide activation patterns within a tissue slab with a realistic fiber rotation is demonstrated.

Mesh:

Year:  1998        PMID: 9444836     DOI: 10.1109/10.650347

Source DB:  PubMed          Journal:  IEEE Trans Biomed Eng        ISSN: 0018-9294            Impact factor:   4.538


  5 in total

1.  Two-dimensional Chebyshev pseudospectral modelling of cardiac propagation.

Authors:  Z Zhan; K T Ng
Journal:  Med Biol Eng Comput       Date:  2000-05       Impact factor: 2.602

2.  Three-dimensional pseudospectral modelling of cardiac propagation in an inhomogeneous anisotropic tissue.

Authors:  K T Ng; R Yan
Journal:  Med Biol Eng Comput       Date:  2003-11       Impact factor: 2.602

Review 3.  Solvers for the cardiac bidomain equations.

Authors:  E J Vigmond; R Weber dos Santos; A J Prassl; M Deo; G Plank
Journal:  Prog Biophys Mol Biol       Date:  2007-08-11       Impact factor: 3.667

4.  Influence of Patient-Specific Head Modeling on EEG Source Imaging.

Authors:  Yohan Céspedes-Villar; Juan David Martinez-Vargas; G Castellanos-Dominguez
Journal:  Comput Math Methods Med       Date:  2020-04-03       Impact factor: 2.238

5.  Numerical study of magnetoacoustic signal generation with magnetic induction based on inhomogeneous conductivity anisotropy.

Authors:  Xun Li; Sanqing Hu; Lihua Li; Shanan Zhu
Journal:  Comput Math Methods Med       Date:  2013-03-26       Impact factor: 2.238

  5 in total

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