Impact of intraventricular septal fiber orientation on cardiac electromechanical function
QUESSON, Bruno
Institut de rythmologie et modélisation cardiaque [Pessac] [IHU Liryc]
IHU-LIRYC
Centre de recherche Cardio-Thoracique de Bordeaux [Bordeaux] [CRCTB]
Institut de rythmologie et modélisation cardiaque [Pessac] [IHU Liryc]
IHU-LIRYC
Centre de recherche Cardio-Thoracique de Bordeaux [Bordeaux] [CRCTB]
HAÏSSAGUERRE, Michel
Centre de recherche Cardio-Thoracique de Bordeaux [Bordeaux] [CRCTB]
Hôpital Haut-Lévêque [CHU Bordeaux]
IHU-LIRYC
< Réduire
Centre de recherche Cardio-Thoracique de Bordeaux [Bordeaux] [CRCTB]
Hôpital Haut-Lévêque [CHU Bordeaux]
IHU-LIRYC
Langue
en
Article de revue
Ce document a été publié dans
AJP - Heart and Circulatory Physiology. 2022-06-01, vol. 322, n° 6, p. H936-H952
American Physiological Society
Résumé en anglais
i) A dual-layer organization of fiber orientation in the intraventricular was identified in ex-vivo hearts of large mammalsii) The RV septum has a downwardly directed superficial layer, which is continuous with the moderator ...Lire la suite >
i) A dual-layer organization of fiber orientation in the intraventricular was identified in ex-vivo hearts of large mammalsii) The RV septum has a downwardly directed superficial layer, which is continuous with the moderator band.iii) Electrically, it produced a diamond activation pattern.iv) Electromechanically, little change in pressure volume loops were noticed but stress distribution was altered.v)Fiber distribution derived from diffusion tensor imaging should be considered for an accurate strain and stress analysis.< Réduire
Mots clés en anglais
diffusion tensor imaging
electromechanical models
fiber orientation
intraventricular septum
normal structural discontinuities
Projet Européen
ERA-NET on cardiovascular diseases to implement joint transnational research projects and set up international cooperations
Project ANR
Contrôle des Ablations Radiofréquence par Thermométrie (IRM) pour Les Oreillettes et VEntricules
Multiscale Modeling of Valvular Heart Diseases - Understanding the Mechanisms of Adverse Remodeling to Improve Precision Medicine - ANR-19-ECVD-0006
Multiscale Modeling of Valvular Heart Diseases - Understanding the Mechanisms of Adverse Remodeling to Improve Precision Medicine - ANR-19-ECVD-0006
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