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Stephan Rohr

Showing results (11-20 of 27) with videos related to

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Frontiers in Physiology|November 12, 2016
Myofibroblasts Electrotonically Coupled to Cardiomyocytes Alter Conduction: Insights at the Cellular Level from a Detailed <i>In silico</i> Tissue Structure ModelFlorian Jousset, Ange Maguy, Stephan Rohr, et al.
Circulation Research|August 2, 2003
Coupling of cardiac electrical activity over extended distances by fibroblasts of cardiac originGiedrius Gaudesius, Michele Miragoli, Stuart P Thomas, et al.
Circulation Research|September 17, 2011
Abolishing myofibroblast arrhythmogeneicity by pharmacological ablation of α-smooth muscle actin containing stress fibersChristian Rosker, Nicolò Salvarani, Stephan Schmutz, et al.
Nature Communications|October 5, 2021
Enabling comprehensive optogenetic studies of mouse hearts by simultaneous opto-electrical panoramic mapping and stimulationMichael Rieger, Christian Dellenbach, Johannes Vom Berg, et al.
Circulation. Arrhythmia and Electrophysiology|May 14, 2017
TGF-β<sub>1</sub> (Transforming Growth Factor-β<sub>1</sub>) Plays a Pivotal Role in Cardiac Myofibroblast ArrhythmogenicityNicolò Salvarani, Ange Maguy, Stefano A De Simone, et al.
American Journal of Physiology. Heart and Circulatory Physiology|December 5, 2006
Dynamic changes of cardiac conduction during rapid pacingAleksandar A Kondratyev, Julien G C Ponard, Adelina Munteanu, et al.
Cardiovascular Research|October 1, 2011
The natural cardioprotective particle HDL modulates connexin43 gap junction channelsSandrine Morel, Miguel A Frias, Christian Rosker, et al.
Frontiers in Physiology|April 11, 2020
The Role of Membrane Capacitance in Cardiac Impulse Conduction: An Optogenetic Study With Non-excitable Cells Coupled to CardiomyocytesStefano Andrea De Simone, Sarah Moyle, Andrea Buccarello, et al.
Nature Communications|February 21, 2019
High-speed mechano-active multielectrode array for investigating rapid stretch effects on cardiac tissueMatthias Imboden, Etienne de Coulon, Alexandre Poulin, et al.
Microsystems & Nanoengineering|September 27, 2021
Nanovolcano microelectrode arrays: toward long-term on-demand registration of transmembrane action potentials by controlled electroporationBenoît X E Desbiolles, Etienne de Coulon, Nicolas Maïno, et al.
Pageof 3

Showing results (11-20 of 27) with videos related to

Sort By:
Pageof 3
Frontiers in Physiology|November 12, 2016
Myofibroblasts Electrotonically Coupled to Cardiomyocytes Alter Conduction: Insights at the Cellular Level from a Detailed <i>In silico</i> Tissue Structure ModelFlorian Jousset, Ange Maguy, Stephan Rohr, et al.
Circulation Research|August 2, 2003
Coupling of cardiac electrical activity over extended distances by fibroblasts of cardiac originGiedrius Gaudesius, Michele Miragoli, Stuart P Thomas, et al.
Circulation Research|September 17, 2011
Abolishing myofibroblast arrhythmogeneicity by pharmacological ablation of α-smooth muscle actin containing stress fibersChristian Rosker, Nicolò Salvarani, Stephan Schmutz, et al.
Nature Communications|October 5, 2021
Enabling comprehensive optogenetic studies of mouse hearts by simultaneous opto-electrical panoramic mapping and stimulationMichael Rieger, Christian Dellenbach, Johannes Vom Berg, et al.
Circulation. Arrhythmia and Electrophysiology|May 14, 2017
TGF-β<sub>1</sub> (Transforming Growth Factor-β<sub>1</sub>) Plays a Pivotal Role in Cardiac Myofibroblast ArrhythmogenicityNicolò Salvarani, Ange Maguy, Stefano A De Simone, et al.
American Journal of Physiology. Heart and Circulatory Physiology|December 5, 2006
Dynamic changes of cardiac conduction during rapid pacingAleksandar A Kondratyev, Julien G C Ponard, Adelina Munteanu, et al.
Cardiovascular Research|October 1, 2011
The natural cardioprotective particle HDL modulates connexin43 gap junction channelsSandrine Morel, Miguel A Frias, Christian Rosker, et al.
Frontiers in Physiology|April 11, 2020
The Role of Membrane Capacitance in Cardiac Impulse Conduction: An Optogenetic Study With Non-excitable Cells Coupled to CardiomyocytesStefano Andrea De Simone, Sarah Moyle, Andrea Buccarello, et al.
Nature Communications|February 21, 2019
High-speed mechano-active multielectrode array for investigating rapid stretch effects on cardiac tissueMatthias Imboden, Etienne de Coulon, Alexandre Poulin, et al.
Microsystems & Nanoengineering|September 27, 2021
Nanovolcano microelectrode arrays: toward long-term on-demand registration of transmembrane action potentials by controlled electroporationBenoît X E Desbiolles, Etienne de Coulon, Nicolas Maïno, et al.
Pageof 3