Key result
Recent advancements in cardiac electrophysiology modeling allow the tracking of interconnected processes across multiple scales, providing unprecedented insight into arrhythmia mechanisms and therapies.
Why the study?
Cardiac electrophysiology modeling has undergone a rapid evolution in complexity and predictive power, enabling multiscale tracking from ion channel gating to arrhythmia mechanisms and drug therapies.
Advanced multi-scale computational modeling provides unprecedented insights into cardiac arrhythmia mechanisms and drug therapies.
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Advanced multi-scale models may improve arrhythmia risk stratification; leaves open clinical translation pending prospective validation.
Moreno et al. (2023) conducted a review in Cardiac arrhythmia. Cardiac electrophysiology modeling was evaluated. Recent advancements in cardiac electrophysiology modeling allow the tracking of interconnected processes across multiple scales, providing unprecedented insight into arrhythmia mechanisms and therapies.
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