Amanote Research
Register
Sign In
Multi-Scale Modeling and Variability in Cardiac Cellular Electrophysiology
doi 10.26481/dis.20170420mc
Full Text
Open PDF
Abstract
Available in
full text
Date
Unknown
Authors
Unknown
Publisher
University of Maastricht
Related search
Estimability Analysis and Optimal Design in Dynamic Multi-Scale Models of Cardiac Electrophysiology
Journal of Agricultural, Biological, and Environmental Statistics
Statistics
Probability
Environmental Science
Applied Mathematics
Uncertainty
Biological Sciences
Agricultural
Calibration of Ionic and Cellular Cardiac Electrophysiology Models
Wiley Interdisciplinary Reviews: Systems Biology and Medicine
Biochemistry
Medicine
Genetics
Molecular Biology
Magnesium and Cardiac Electrophysiology
Japanese Journal of Electrocardiology
Representation of Multiple Cellular Phenotypes Within Tissue-Level Simulations of Cardiac Electrophysiology
Bulletin of Mathematical Biology
Genetics
Pharmacology
Molecular Biology
Environmental Science
Biochemistry
Biological Sciences
Mathematics
Immunology
Computational Theory
Agricultural
Neuroscience
ELECTROPHYSIOLOGY: Temporary Cardiac Pacing
Heart
On Modeling and Analyzing Sparsely Networked Large-Scale Multi-Agent Systems With Cellular and Graph Automata
Lecture Notes in Computer Science
Computer Science
Theoretical Computer Science
Autonomic Nerve Function and Cardiac Electrophysiology
Japanese Journal of Electrocardiology
Multi-Temporal Aspects on Contextual Variability Modeling
Personalization of Cellular Electrophysiology Models: Utopia?