Neural network emulation of the human ventricular cardiomyocyte action potential for more efficient computations in pharmacological studies
Computer models of the human ventricular cardiomyocyte action potential (AP) have reached a level of detail and maturity that has led to an increasing number of applications in the pharmaceutical sector. However, interfacing the models with experimental data can become a significant computational bu...
Elmentve itt :
Szerzők: |
Grandits Thomas Augustin Christoph M Haase Gundolf Jost Norbert László Mirams Gary R Niederer Steven A Plank Gernot Varró András Virág László Jung Alexander |
---|---|
Dokumentumtípus: | Cikk |
Megjelent: |
2024
|
Sorozat: | ELIFE
12 |
Tárgyszavak: | |
doi: | 10.7554/eLife.91911 |
mtmt: | 34786266 |
Online Access: | http://publicatio.bibl.u-szeged.hu/30115 |
Hasonló tételek
-
Acetylcholine Reduces IKr and Prolongs Action Potentials in Human Ventricular Cardiomyocytes
Szerző: Koncz Istvan, et al.
Megjelent: (2022) -
Plottervezérlő emulátor program
Szerző: Sváb Tamás
Megjelent: (1989) -
Electrophysiological heterogeneity in populations of ventricular cardiomyocytes and the consequences for the action potential response to specific ion channel inhibition [abstract] /
Szerző: Smith Godfrey
Megjelent: (2022) -
Effects of the novel myosin activator danicamtiv on the contractility and CA2+ transients of isolated left ventricular cardiomyocytes [abstract] /
Szerző: Sárkány Fruzsina, et al.
Megjelent: (2022) -
Dynamics of the late sodium current under the action potential in canine, guinea pig and human left ventricular cardiomyocytes [abstract] /
Szerző: Horváth Balázs, et al.
Megjelent: (2022)