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Spatial effects from bipolar current injection in 3D myocardium: Implications for conductivity measurements

Publication ,  Journal Article
Entcheva, E; Eason, J; Claydon, F; Malkin, R
Published in: Computers in Cardiology
December 1, 1997

This study aims at predicting the spatial extent of the polarization in myocardium (surface and in-depth patterns) resulting from bipolar current injection. The three-dimensional effects resulting from transmural fiber rotation and unequal anisotropy ratio for the intra-and extracellular domain are modeled using a 3D finite element bidomain model. Circular current and voltage electrodes with different radii and distance between them are considered. We assess the accuracy of the idealized models, applied in combination with the four electrode technique for interpretation of conductivity measurements in myocardium, in the presence of transmural rotation. Based on the spatial sensitivity of the extracellular and transmembrane potential fields to the underlying conductivity tensors we recommend an alternative placement of the sensing electrodes for standard electrical or optical measurements.

Duke Scholars

Published In

Computers in Cardiology

ISSN

0276-6574

Publication Date

December 1, 1997

Start / End Page

717 / 720

Related Subject Headings

  • Cardiovascular System & Hematology
 

Citation

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Entcheva, E., Eason, J., Claydon, F., & Malkin, R. (1997). Spatial effects from bipolar current injection in 3D myocardium: Implications for conductivity measurements. Computers in Cardiology, 717–720.
Entcheva, E., J. Eason, F. Claydon, and R. Malkin. “Spatial effects from bipolar current injection in 3D myocardium: Implications for conductivity measurements.” Computers in Cardiology, December 1, 1997, 717–20.
Entcheva E, Eason J, Claydon F, Malkin R. Spatial effects from bipolar current injection in 3D myocardium: Implications for conductivity measurements. Computers in Cardiology. 1997 Dec 1;717–20.
Entcheva, E., et al. “Spatial effects from bipolar current injection in 3D myocardium: Implications for conductivity measurements.” Computers in Cardiology, Dec. 1997, pp. 717–20.
Entcheva E, Eason J, Claydon F, Malkin R. Spatial effects from bipolar current injection in 3D myocardium: Implications for conductivity measurements. Computers in Cardiology. 1997 Dec 1;717–720.

Published In

Computers in Cardiology

ISSN

0276-6574

Publication Date

December 1, 1997

Start / End Page

717 / 720

Related Subject Headings

  • Cardiovascular System & Hematology