Robert A. Malkin

Affiliations: 
The University of Memphis, Memphis, TN, United States 
Area:
Biomedical Engineering
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Publications

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Patel SG, Malkin RA. (2007) Effect of electrode surface area on thresholds for AC stimulation and ventricular fibrillation. Ieee Transactions On Bio-Medical Engineering. 54: 1829-36
Malkin RA, Jackson SR, Nguyen J, et al. (2006) Experimental verification of theoretical predictions concerning the optimum defibrillation waveform. Ieee Transactions On Bio-Medical Engineering. 53: 1492-8
Malkin RA, Kramer N, Schnitz B, et al. (2005) Advances in electrical and mechanical cardiac mapping. Physiological Measurement. 26: R1-14
Schnitz BA, Guan DX, Malkin RA. (2004) Design of an integrated sensor for in vivo simultaneous electrocontractile cardiac mapping. Ieee Transactions On Bio-Medical Engineering. 51: 355-61
Malkin RA, de Jongh Curry A. (2004) Frequency dependence of the cardiac threshold to alternating current between 10 Hz and 160 Hz. Medical & Biological Engineering & Computing. 41: 640-5
Marak SC, de Jongh Curry AL, Williams TA, et al. (2004) 17 INDUCIBILITY OF VENTRICULAR ARRHYTHMIAS IN A RAT MODEL OF CARDIAC FIBROSIS. Journal of Investigative Medicine. 52: S259.6-S259
Sylvester E, Johnson E, Hess P, et al. (2003) Defibrillation causes immediate cardiac dilation in humans. Journal of Cardiovascular Electrophysiology. 14: 832-6
Gopalakrishnan M, Malkin RA. (2003) Two-dimensional analysis of ventricular fibrillation in the guinea pig. Journal of Electrocardiology. 36: 147-53
Roberts SJ, Guan D, Malkin R. (2003) The defibrillation efficacy of high frequency alternating current sinusoidal waveforms in guinea pigs. Pacing and Clinical Electrophysiology : Pace. 26: 599-604
De Jongh AL, Ramanathan V, Hoffmeister BK, et al. (2003) Left ventricular geometry immediately following defibrillation: shock-induced relaxation. American Journal of Physiology. Heart and Circulatory Physiology. 284: H815-9
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