Using continuation methods to follow a converged cardiac action potential limit cycle as parameters move in MCMC reduces a 40,000-iteration calibration from 12.4 hours to 3.7 hours on the tested toy model.
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Continuation methods as a tool for parameter inference in electrophysiology modeling
Using continuation methods to follow a converged cardiac action potential limit cycle as parameters move in MCMC reduces a 40,000-iteration calibration from 12.4 hours to 3.7 hours on the tested toy model.