Spatiotemporal correlation uncovers characteristic lengths in cardiac tissue.


Journal

Physical review. E
ISSN: 2470-0053
Titre abrégé: Phys Rev E
Pays: United States
ID NLM: 101676019

Informations de publication

Date de publication:
Aug 2019
Historique:
received: 14 06 2018
entrez: 3 10 2019
pubmed: 3 10 2019
medline: 8 2 2020
Statut: ppublish

Résumé

Complex spatiotemporal patterns of action potential duration have been shown to occur in many mammalian hearts due to period-doubling bifurcations that develop with increasing frequency of stimulation. Here, through high-resolution optical mapping experiments and mathematical modeling, we introduce a characteristic spatial length of cardiac activity in canine ventricular wedges via a spatiotemporal correlation analysis, at different stimulation frequencies and during fibrillation. We show that the characteristic length ranges from 40 to 20 cm during one-to-one responses and it decreases to a specific value of about 3 cm at the transition from period-doubling bifurcation to fibrillation. We further show that during fibrillation, the characteristic length is about 1 cm. Another significant outcome of our analysis is the finding of a constitutive phenomenological law obtained from a nonlinear fitting of experimental data which relates the conduction velocity restitution curve with the characteristic length of the system. The fractional exponent of 3/2 in our phenomenological law is in agreement with the domain size remapping required to reproduce experimental fibrillation dynamics within a realistic cardiac domain via accurate mathematical models.

Identifiants

pubmed: 31574686
doi: 10.1103/PhysRevE.100.020201
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

020201

Auteurs

Alessandro Loppini (A)

Department of Engineering, Campus Bio-Medico University of Rome, Via A. del Portillo 21, I-00128 Rome, Italy.

Alessio Gizzi (A)

Department of Engineering, Campus Bio-Medico University of Rome, Via A. del Portillo 21, I-00128 Rome, Italy.

Christian Cherubini (C)

Department of Engineering, Campus Bio-Medico University of Rome, Via A. del Portillo 21, I-00128 Rome, Italy.
ICRANet, Piazza delle Repubblica 10, I-65122 Pescara, Italy.

Elizabeth M Cherry (EM)

School of Mathematical Sciences, Rochester Institute of Technology, 85 Lomb Memorial Drive, Rochester, New York 14623, USA.

Flavio H Fenton (FH)

School of Physics, Georgia Institute of Technology, 837 State Street, Atlanta, Georgia 30332, USA.

Simonetta Filippi (S)

Department of Engineering, Campus Bio-Medico University of Rome, Via A. del Portillo 21, I-00128 Rome, Italy.
ICRANet, Piazza delle Repubblica 10, I-65122 Pescara, Italy.

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Classifications MeSH