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Medical & Biological Engineering & Computing|July 14, 2017
Characterisation of human AV-nodal properties using a network modelMikael Wallman, Frida Sandberg
Frontiers in Physiology|November 15, 2021
Non-invasive Characterization of Human AV-Nodal Conduction Delay and Refractory Period During Atrial FibrillationMattias Karlsson, Frida Sandberg, Sara R Ulimoen, et al.
Frontiers in Physiology|May 23, 2024
ECG-based estimation of respiration-induced autonomic modulation of AV nodal conduction during atrial fibrillationFelix Plappert, Gunnar Engström, Pyotr G Platonov, et al.
Frontiers in Physiology|January 29, 2024
Model-based estimation of AV-nodal refractory period and conduction delay trends from ECGMattias Karlsson, Pyotr G Platonov, Sara R Ulimoen, et al.
Frontiers in Physiology|October 21, 2022
ECG based assessment of circadian variation in AV-nodal conduction during AF-Influence of rate control drugsMattias Karlsson, Mikael Wallman, Pyotr G Platonov, et al.
Frontiers in Physiology|October 3, 2022
An atrioventricular node model incorporating autonomic toneFelix Plappert, Mikael Wallman, Mostafa Abdollahpur, et al.
Frontiers in Physiology|August 18, 2025
ECG-based beat-to-beat assessment of AV node conduction properties during AFMattias Karlsson, Felix Plappert, Pyotr G Platonov, et al.
The Journal of Physiology|December 20, 2025
Computational model of haemodynamics during atrial fibrillationFelix Plappert, Pim J A Oomen, Clara E Jones, et al.
IEEE Transactions on Bio-Medical Engineering|April 12, 2012
A comparative study of graph-based, eikonal, and monodomain simulations for the estimation of cardiac activation timesMikael Wallman, Nicolas P Smith, Blanca Rodriguez
Medical Image Analysis|November 20, 2013
Computational methods to reduce uncertainty in the estimation of cardiac conduction properties from electroanatomical recordingsMikael Wallman, Nicolas P Smith, Blanca Rodriguez
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