Export 12 results:
Search results for biblio_year:2022
Filters: Author is Bérénice Charrez [Reset Search]
Filters: Author is Bérénice Charrez [Reset Search]
Estimating active tension in cardiac micromuscles In World Congress on Biomechanics (WCB), Taipei, Taiwan (Virtual)., 2022.
"Validating the Arrhythmogenic Potential of High-, Intermediate-, and Low-Risk Drugs in a Human-Induced Pluripotent Stem Cell-Derived Cardiac Microphysiological System." ACS Pharmacology & Translational Science 5, no. 8 (2022): 652-667.
"Heart Muscle Microphysiological System for Cardiac Liability Prediction of Repurposed COVID-19 Therapeutics." Frontiers in Pharmacology 12 (2021): 684252.
"In vitro safety “clinical trial” of the cardiac liability of drug polytherapy." Clinical and Translational Science 14, no. 3 (2021): 1155-1165.
"Improved computational identification of drug response using optical measurements of human stem cell derived cardiomyocytes in microphysiological systems." Frontiers in Pharmacology 10 (2020).
"In Vitro Safety “Clinical Trial” of the Cardiac Liability of Hydroxychloroquine and Azithromycin as COVID19 Polytherapy." Clinical Pharmacology & Therapeutics (2020).
Finite element modeling of cardiac tissue in heart-on-a-chip systems In Washington DC, USA., 2019.
A numerical model of mechanical properties of cardiac tissue in heart-on-a-chip devices. Norwegian meeting on PDEs, Trondheim, Norway, 2019.
postertrondheim.pdf (1.07 MB)
In Silico - Augmented Cardiac Microphysiological Systems for Evaluating Cardiac Drug Effects. BMES Conference, Atlanta, USA, 2018.
In Silico - Augmented Cardiac Microphysiological Systems for Evaluating Cardiac Drug Effects. Keystone Organ on Chip Symposium, Montana, USA, 2018.
In Silico Modeling of Cardiac Microphysiological Systems for Evaluating Drug Side Effects In Heart By Numbers Conference, Berlin, Germany., 2018.
"Inversion and computational maturation of drug response using human stem cell derived cardiomyocytes in microphysiological systems." Nature Scientific Reports 8 (2018).