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Google Scholar Profile

Published/Accepted Peer-Reviewed Articles

Weinberg SH, "High-frequency stimulation of excitable cells and networks." PLoS ONE 8(11):e81402 (2013).  [PMID: 24278435].

MATLAB GUI for AHH simulations

Weinberg SH, Chang KC, Zhu R, Tandri H, Berger RD, Trayanova NA, and Tung L, “Defibrillation success by high frequency electric fields is related to degree and location of conduction block.” Heart Rhythm  10(5): 740 (2013).  [PMID: 23354078].

Weinberg M, Weedn V, Weinberg S, and Fowler D. “Characteristics of medical examiner/coroners offices currently accredited by the National Association of Medical Examiners.” J. Forensic Sci. 58(5): 1193-1199 (2013). [PMID: 23822817].

Weinberg SH and Smith GD, “Discrete-state stochastic models of calcium-regulated calcium influx are often not well-approximated by continuous mass-action descriptions of subspace dynamics.” Comput. Math. Methods Med.: Special Issue on Cardiovascular System Modeling.  2012: 897371 (2012) [PMID: 23509597].

Weinberg SH and Tung L, “Oscillation in cycle length induces transient discordant and steady-state concordant alternans in the heart.” PLoS ONE.  7(7): e40477 (2012) [PMID: 22792346] 

Tandri H*, Weinberg SH*, Chang KC, Zhu R, Trayanova NA, Tung L, and Berger RD, “Reversible cardiac conduction block and defibrillation with high-frequency electric field.” Science Transl. Med. 3, 102ra96 (2011).  [PMID: 21957174]

Burridge PW, Thompson S, Millrod MA, Weinberg S, Yuan X, Peters A, Mahairaki V, Koliatsos V, Tung L, and Zambidis ET, “A universal system for highly efficient cardiac differentiation of human induced pluripotent stem cells that eliminates interline variability.” PLoS ONE. 6(4): e18293 (2011).  [PMID: 21494607] 

Weinberg S, Malhotra N, and Tung L, “Vulnerable windows define susceptibility to alternans and spatial discordance.” Am J Physiol. Heart Circ Physiol. 298 (6): H1727-1737 (2010).  [PMID: 20363894]

Anderson WS, Kudela P, Weinberg S, Bergey GK, and Franaszczuk PJ, “Phase-dependent stimulation effects on bursting activity in a neural network cortical simulation.” Epilepsy Res. 84 (1): 42-55 (2009).  [PMID: 19185465] 

Weinberg S, Iravanian S, and Tung L, “Representation of collective electrical behavior of cardiac cell sheets.” Biophys. J. 95: 1138-1150 (2008).  [PMID: 18469085]

Sarunic MV, Weinberg S, and Izatt JA, “Full-field swept-source phase microscopy,” Optics Letters 31: 1462-1464 (2006). [PMID: 16642139]

* Authors contributed equally


Invited Book Chapters/Reviews

Blazeski A, Zhu R, Hunter DW, Weinberg SH, Zambidis ET, and Tung L. “Cardiomyocytes derived from human induced pluripotent stem cells as models for normal and diseased electrophysiology and contractility.” Prog. Biophys. Mol. Biol. 110(2-3): 166-77 (2012). Review. [PMID: 22971665]

Blazeski A, Zhu R, Hunter DW, Weinberg SH, Boheler KR, Zambidis ET, and Tung L. “Electrophysiological and contractile function of cardiomyocytes derived from human  embryonic stem cells.” Prog. Biophys. Mol. Biol. 110(2-3): 178-95 (2012). Review. [PMID: 22958937]

Weinberg S, Lipke EA, and Tung L, “In vitro electrophysiological mapping of stem cells,” In: Stem Cells for Myocardial Regeneration: Methods and Protocols, Methods in Molecular Biology. Randall J. Lee, ed., Humana Press, 660: 215-37 (2010).  [PMID: 20680822]