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Stem Cell Reports|March 6, 2018
Contractile Work Contributes to Maturation of Energy Metabolism in hiPSC-Derived CardiomyocytesBärbel M Ulmer, Andrea Stoehr, Mirja L Schulze, et al.
Journal of Molecular and Cellular Cardiology|April 26, 2016
Comparison of the effects of a truncating and a missense MYBPC3 mutation on contractile parameters of engineered heart tissuePaul J M Wijnker, Felix W Friedrich, Alexander Dutsch, et al.
Plos One|November 28, 2018
Correction: Analysis of Tyrosine Kinase Inhibitor-Mediated Decline in Contractile Force in Rat Engineered Heart TissueFabian Jacob, Amina Y Yonis, Friederike Cuello, et al.
Plos One|February 4, 2016
Analysis of Tyrosine Kinase Inhibitor-Mediated Decline in Contractile Force in Rat Engineered Heart TissueFabian Jacob, Amina Y Yonis, Friederike Cuello, et al.
Scientific Reports|December 5, 2019
Phosphomimetic cardiac myosin-binding protein C partially rescues a cardiomyopathy phenotype in murine engineered heart tissueAlexander Dutsch, Paul J M Wijnker, Saskia Schlossarek, et al.
Toxicological Sciences : an Official Journal of the Society of Toxicology|April 29, 2017
Blinded Contractility Analysis in hiPSC-Cardiomyocytes in Engineered Heart Tissue Format: Comparison With Human Atrial TrabeculaeIngra Mannhardt, Alexandra Eder, Berengere Dumotier, et al.
Stem Cell Reports|February 13, 2018
Low Resting Membrane Potential and Low Inward Rectifier Potassium Currents Are Not Inherent Features of hiPSC-Derived CardiomyocytesAndrás Horváth, Marc D Lemoine, Alexandra Löser, et al.
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