Impact of tissue microstructure on a model of cardiac electromechanics based on MRI data
Cardiac motion is a highly complex and integrated process of vital importance as it sustains the primary function of the heart, that is pumping blood. Cardiac tissue microstructure, in particular the alignment of myocytes (also referred to as fibre direction) and their lateral organisation into lami...
Autore principale: | Carapella, V |
---|---|
Altri autori: | Grau, V |
Natura: | Tesi |
Lingua: | English |
Pubblicazione: |
2013
|
Soggetti: |
Documenti analoghi
Documenti analoghi
-
An integrative framework for computational modelling of cardiac electromechanics in the mouse
di: Land, S
Pubblicazione: (2013) -
Multi-scale modelling of blood flow in the coronary microcirculation
di: Smith, A
Pubblicazione: (2013) -
Cardiac mechanical model personalisation and its clinical applications
di: Xi, J
Pubblicazione: (2013) -
Mathematical modelling of Centrosomin incorporation in Drosophila centrosomes
di: Bakshi, S
Pubblicazione: (2013) -
Towards a computational model of the colonic crypt with a realistic, deformable geometry
di: Dunn, S
Pubblicazione: (2011)