Uncertainty quantification (UQ) is a vital step in using mathematical models and simulations to take decisions. The field of cardiac simulation has begun to explore and adopt UQ methods to characterize uncertainty in model inputs and how that propagates through to outputs or predictions; examples of this can be seen in the papers of this issue. In this review and perspective piece, we draw attention to an important and under-addressed source of uncertainty in our predictions-that of uncertainty in the model structure or the equations themselves. The difference between imperfect models and reality is termed model discrepancy, and we are often uncertain as to the size and consequences of this discrepancy. Here, we provide two examples of the ...
There are many sources of uncertainty in the recording and modelling of membrane action potentials (...
Mathematical models of a cellular action potential in cardiac modelling have become increasingly com...
We present a new, computationally efficient framework to perform forward uncertainty quantification ...
Uncertainty quantification (UQ) is a vital step in using mathematical models and simulations to take...
Uncertainty quantification (UQ) is a vital step in using mathematical models and simulations to take...
Cardiac electrophysiology models have been developed for over 50 years, and now include detailed des...
Cardiac electrophysiology models have been developed for over 50years, and now include detailed desc...
Mathematical models of a cellular action potential in cardiac modelling have become increasingly com...
Models of electrical activation and recovery in cardiac cells and tissue have become valuable resear...
Models of electrical activation and recovery in cardiac cells and tissue have become valuable resear...
AbstractCardiac electrophysiology models have been developed for over 50years, and now include detai...
The goal of systems biology is to provide a predictive and quantitative understanding of complex bio...
There are many sources of uncertainty in the recording and modelling of membrane action potentials (...
Mathematical models of a cellular action potential in cardiac modelling have become increasingly com...
We present a new, computationally efficient framework to perform forward uncertainty quantification ...
Uncertainty quantification (UQ) is a vital step in using mathematical models and simulations to take...
Uncertainty quantification (UQ) is a vital step in using mathematical models and simulations to take...
Cardiac electrophysiology models have been developed for over 50 years, and now include detailed des...
Cardiac electrophysiology models have been developed for over 50years, and now include detailed desc...
Mathematical models of a cellular action potential in cardiac modelling have become increasingly com...
Models of electrical activation and recovery in cardiac cells and tissue have become valuable resear...
Models of electrical activation and recovery in cardiac cells and tissue have become valuable resear...
AbstractCardiac electrophysiology models have been developed for over 50years, and now include detai...
The goal of systems biology is to provide a predictive and quantitative understanding of complex bio...
There are many sources of uncertainty in the recording and modelling of membrane action potentials (...
Mathematical models of a cellular action potential in cardiac modelling have become increasingly com...
We present a new, computationally efficient framework to perform forward uncertainty quantification ...