Browse by UCL people
Group by: Type | Date
Number of items: 6.
2023
Bueno-Palomeque, FL;
Mountris, KA;
Ortigosa, N;
Bailon, R;
Bijnens, B;
Crispi, F;
Pueyo, E;
... Laguna, P; + view all
(2023)
QRS-T Angles as Markers for Heart Sphericity in Subjects with Intrauterine Growth Restriction: A Simulation Study.
IEEE Journal of Biomedical and Health Informatics
10.1109/JBHI.2023.3297550.
(In press).
|
Celotto, C;
Sánchez, C;
Mountris, KA;
Laguna, P;
Pueyo, E;
(2023)
Steady-state and transient effects of SK channel block and adrenergic stimulation to counteract acetylcholine-induced arrhythmogenic effects in the human atria: A computational study.
Computers in Biology and Medicine
, 157
, Article 106719. 10.1016/j.compbiomed.2023.106719.
|
Mountris, KA;
Li, M;
Schilling, R;
Dong, L;
Atluri, SN;
Casals, A;
Wurdemann, HA;
(2023)
An explicit total Lagrangian Fragile Points Method for finite deformation of hyperelastic materials.
Engineering Analysis with Boundary Elements
, 151
pp. 255-264.
10.1016/j.enganabound.2023.03.001.
|
2022
Montero-Calle, Pilar;
Flandes-Iparraguirre, Maria;
Mountris, Konstantinos;
de la Nava, Ana;
Laita, Nicolas;
Rosales, Ricardo M;
Iglesias-Garcia, Olalla;
... Mazo, Manuel M; + view all
(2022)
Fabrication of human myocardium using multidimensional modelling of engineered tissues.
Biofabrication
, 14
(4)
, Article 045017. 10.1088/1758-5090/ac8cb3.
(In press).
|
Mountris, Konstantinos A;
Li, Mingjing;
Schilling, Richard;
Dong, Leiting;
Atluri, Satya N;
Casals, Alicia;
Wurdemann, Helge A;
(2022)
An Explicit Total Lagrangian Fragile Points Method for Finite Deformation of Hyperelastic Materials.
ArXiv: Ithaca, NY, USA.
|
Rosales, RM;
Mountris, KA;
Doblare, M;
Mazo, MM;
Pueyo, E;
(2022)
Ventricular Conduction System Modeling for Electrophysiological Simulation of the Porcine Heart.
In:
Computing in Cardiology.
Computing in Cardiology: Tampere, Finland.
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