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Modeling of ventricular tissue and ECG reconstruction in acute and chronic ischemia

Publication ,  Journal Article
Cimponeriu, A; Starmer, CF; Bezerianos, A
Published in: Computers in Cardiology
December 1, 1999

A realistic evolution of ischemia from coronary artery occlusion to myocardial infarction is investigated in order to identify the relationship between micro level changes and the surface ECG. Based on the available experimental results, a complete description of the pathological conditions was made, and the direct problem was stated algorithmically. Starting from Luo-Rudy I cellular model a bi-dimensional structure was built in order to simulate the ventricular tissue. Chemical and electrical changes were induced gradually in order to simulate the evolution of the ischemic episode from acute phase to infarction. ECG reconstruction was performed during normal and acute ischemic conditions, infarction and after impairment resolving when despite of necrotic region presence the chemical concentrations have returned to normal levels.

Duke Scholars

Published In

Computers in Cardiology

ISSN

0276-6574

Publication Date

December 1, 1999

Start / End Page

503 / 506

Related Subject Headings

  • Cardiovascular System & Hematology
 

Citation

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Cimponeriu, A., Starmer, C. F., & Bezerianos, A. (1999). Modeling of ventricular tissue and ECG reconstruction in acute and chronic ischemia. Computers in Cardiology, 503–506.
Cimponeriu, A., C. F. Starmer, and A. Bezerianos. “Modeling of ventricular tissue and ECG reconstruction in acute and chronic ischemia.” Computers in Cardiology, December 1, 1999, 503–6.
Cimponeriu A, Starmer CF, Bezerianos A. Modeling of ventricular tissue and ECG reconstruction in acute and chronic ischemia. Computers in Cardiology. 1999 Dec 1;503–6.
Cimponeriu, A., et al. “Modeling of ventricular tissue and ECG reconstruction in acute and chronic ischemia.” Computers in Cardiology, Dec. 1999, pp. 503–06.
Cimponeriu A, Starmer CF, Bezerianos A. Modeling of ventricular tissue and ECG reconstruction in acute and chronic ischemia. Computers in Cardiology. 1999 Dec 1;503–506.

Published In

Computers in Cardiology

ISSN

0276-6574

Publication Date

December 1, 1999

Start / End Page

503 / 506

Related Subject Headings

  • Cardiovascular System & Hematology