In this paper we propose a discrete in continuous mathematical model for the morphogenesis of the posterior lateral line system in zebrafish. Our model follows closely the results obtained in recent biological experiments. We rely on a hybrid description: discrete for the cellular level and continuous for the molecular level. We prove the existence of steady solutions consistent with the formation of particular biological structure, the neuromasts. Dynamical numerical simulations are performed to show the behavior of the model and its qualitative and quantitative accuracy to describe the evolution of the cell aggregate. · self-organization · embryogenesis · zebrafish · neuromasts formation
Title page Introduction Material and Methods Results Discussion BibliographyTissue morphog...
The lateral line of the zebrafish has many of the advantages that made the sensory organs of Drosoph...
AbstractWork on zebrafish mutants that develop supernumerary neuromasts in the lateral line has reve...
In this paper we propose a discrete in continuous mathematical model for the morphogenesis of the po...
Starting from the results of recent biological experiments, we propose a discrete in continuous math...
The morphogenesis of zebrafish posterior lateral line (PLL) is a good predictive model largely used ...
In this thesis we deal with mathematical models and numerical simulations for cell migration and sel...
dissertationThe goal of this dissertation is to contribute to the understanding of collective cell m...
Collective cell migration plays a fundamental role in many biological phenomena such as immune respo...
SummaryThe lateral line organ is a mechanosensory organ of fish and amphibians that detects changes ...
Collective cell migration plays a fundamental role in many biological phenomena such as immune respo...
Artículo de publicación ISIBackground: Development of the posterior lateral line (PLL) system in zeb...
SummaryThe shape of most complex organ systems arises from the directed migration of cohesive groups...
We examine at the cellular level the postembryonic development of the posterior lateral line in the ...
The purpose of this thesis is to introduce and demonstrate several biological processes or phenomena...
Title page Introduction Material and Methods Results Discussion BibliographyTissue morphog...
The lateral line of the zebrafish has many of the advantages that made the sensory organs of Drosoph...
AbstractWork on zebrafish mutants that develop supernumerary neuromasts in the lateral line has reve...
In this paper we propose a discrete in continuous mathematical model for the morphogenesis of the po...
Starting from the results of recent biological experiments, we propose a discrete in continuous math...
The morphogenesis of zebrafish posterior lateral line (PLL) is a good predictive model largely used ...
In this thesis we deal with mathematical models and numerical simulations for cell migration and sel...
dissertationThe goal of this dissertation is to contribute to the understanding of collective cell m...
Collective cell migration plays a fundamental role in many biological phenomena such as immune respo...
SummaryThe lateral line organ is a mechanosensory organ of fish and amphibians that detects changes ...
Collective cell migration plays a fundamental role in many biological phenomena such as immune respo...
Artículo de publicación ISIBackground: Development of the posterior lateral line (PLL) system in zeb...
SummaryThe shape of most complex organ systems arises from the directed migration of cohesive groups...
We examine at the cellular level the postembryonic development of the posterior lateral line in the ...
The purpose of this thesis is to introduce and demonstrate several biological processes or phenomena...
Title page Introduction Material and Methods Results Discussion BibliographyTissue morphog...
The lateral line of the zebrafish has many of the advantages that made the sensory organs of Drosoph...
AbstractWork on zebrafish mutants that develop supernumerary neuromasts in the lateral line has reve...