Key result
Applying uncertainty quantification to cardiac electrophysiology models enables probabilistic representations of parameters, offering insight into beat-to-beat variability in action potentials.
Applying uncertainty quantification to cardiac electrophysiology models provides probabilistic predictions that better capture biological variability compared to traditional point estimates.
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May warrant caution interpreting deterministic cardiac EP models; leaves open standardized uncertainty quantification in research.
Johnstone et al. (2015) conducted a review in Cardiac electrophysiology models. Uncertainty quantification vs. Traditional point prediction models was evaluated. Applying uncertainty quantification to cardiac electrophysiology models enables probabilistic representations of parameters, offering insight into beat-to-beat variability in action potentials.
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