Comparative Modeling of Biphasic Defibrillation Pulses: Quasi-sinusoidal and Trapezoidal with Sloping Rise and Fall

Author:

Gorbunov B. B.,Vostrikov V. A.,Nesterenko I. V.,Telyshev D. V.

Publisher

Springer Science and Business Media LLC

Subject

Medical Laboratory Technology,Biomedical Engineering,Medicine (miscellaneous)

Reference19 articles.

1. Ristagno, G., Yu, T., Quan, W., Freeman, G., and Li, Y., “Current is better than energy as predictor of success for biphasic defibrillator shocks in a porcine model of ventricular fibrillation,” Resuscitation, 84, No. 5, 678-683 (2013).

2. Chen, B., Yu, T., Ristagno, G., Quan, W., and Li, Y., “Average current is better than peak current as therapeutic dosage for biphasic waveforms in a ventricular fibrillation pig model of cardiac arrest,” Resuscitation, 85, No. 10, 1399-1404 (2014).

3. Russian Federation State Standard GOST R IEC 60601-2-4-2013: Medical Electrical Equipment — Part 24: Particular Requirements for the Basic Safety and Essential Performance of Cardiac Defibrillators [in Russian].

4. Venin, I. V., Gurvich, N. L., Liberzon, A. P., Tabak, V. Ya., Tsukerman, B. M., and Sherman, A. M., “ DI-03 and DKI-01 defibrillators,” Nov. Med. Priborostr., No. 3, 48-53 (1973).

5. Vostrikov, V. A., Syrkin, A. L., Kholin, P. V., and Razumov, K. V., “Hospital cardiac ventricular defibrillators: efficacy of biphasic quasi-sinusoidal pulses,” Kardiologiya, 43, No. 12, 51-58 (2003).

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