Search Results - "Timmermann, Viviane"
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1
Mechano-Electric Coupling and Arrhythmogenic Current Generation in a Computational Model of Coupled Myocytes
Published in Frontiers in physiology (10-12-2020)“…A wide range of arrhythmogenic phenotypes have been associated with heterogeneous mechanical dyskinesis. Pro-arrhythmic effects are often associated with…”
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2
Passive myocardial mechanical properties: meaning, measurement, models
Published in Biophysical reviews (01-10-2021)“…Passive mechanical tissue properties are major determinants of myocardial contraction and relaxation and, thus, shape cardiac function. Tightly regulated,…”
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3
Arrhythmogenic Current Generation by Myofilament-Triggered Ca2+ Release and Sarcomere Heterogeneity
Published in Biophysical journal (17-12-2019)“…Heterogeneous mechanical dyskinesis has been implicated in many arrhythmogenic phenotypes. Strain-dependent perturbations to cardiomyocyte electrophysiology…”
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4
An integrative appraisal of mechano-electric feedback mechanisms in the heart
Published in Progress in biophysics and molecular biology (01-11-2017)“…Mechanically-induced alterations in cardiac electrophysiology are referred to as mechano-electric feedback (MEF), and play an important role in electrical…”
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5
Arrhythmogenic Current Generation by Myofilament-Triggered Ca 2+ Release and Sarcomere Heterogeneity
Published in Biophysical journal (17-12-2019)“…Heterogeneous mechanical dyskinesis has been implicated in many arrhythmogenic phenotypes. Strain-dependent perturbations to cardiomyocyte electrophysiology…”
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6
Quaternion-Aligned Electroanatomical Models of the Murine Atria from Standard-Output Functional and Structural Imaging
Published 05-12-2023“…Our evolving understanding of the heterocellular cardiac environment demands innovative tools for its study. While murine models are lauded for their…”
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7
An In-Silico Study on Integrated Mechanisms of Mechano-Electric Coupling in Ischaemic Arrhythmogenesis
Published 11-12-2023“…Heterogeneous mechanical dyskinesis during acute myocardial ischaemia is thought to contribute to arrhythmogenic alterations to cardiac electrophysiology…”
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