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Evidence for heterogeneous subsarcolemmal Na+ levels in rat ventricular myocytes." AJP-Heart and Circulatory Physiology 6, no. 3 (2019).
"A computational pipeline for quantification of mouse myocardial stiffness parameters." Computers in Biology and Medicine 53 (2014): 65-75.
"Slow Ca2+ Sparks De-Synchronize Ca2+ Release in Failing Cardiomyocytes: Evidence for Altered Configuration of Ca2+ Release Units?" Journal of Molecular and Cellular Cardiology 58 (2013): 41-52.
"Control of CA Release Syncrony by Action Potential Configuration in Murine Cardiomyocytes In Biophysical Journal. Vol. 98. unknown, 2010.
Control of Ca2+ Release by Action Potential Configuration in Normal and Failing Murine Cardiomyocytes." Biophysical Journal 99 (2010): 1377-1386.
Simula.simula.122.pdf (924.18 KB)
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Reduced Level of Serine (16) Phosphorylated Phospholamban in the Failing Rat Myocardium: a Major Contributor to Reduced SERCA2 Activity." Cardiovascular Research 53 (2002): 382-391.
"Changes in the State of Phopsphorylation in Cardiomyocytes From Rats With Myocardial Infarction In Biophysical annual meeting. 78th ed. Biophysical Journal, 2000.