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Abdelghani Bellouquid

Researcher at École Normale Supérieure

Publications -  49
Citations -  2625

Abdelghani Bellouquid is an academic researcher from École Normale Supérieure. The author has contributed to research in topics: Asymptotic analysis & Nonlinear system. The author has an hindex of 22, co-authored 49 publications receiving 2288 citations. Previous affiliations of Abdelghani Bellouquid include Instituto Politécnico Nacional & Cadi Ayyad University.

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Toward a mathematical theory of Keller–Segel models of pattern formation in biological tissues

TL;DR: In this article, a survey and critical analysis focused on a variety of chemotaxis models in biology, namely the classical Keller-Segel model and its subsequent modifications, which, in several cases, have been developed to obtain models that prevent the non-physical blow up of solutions.
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Multiscale biological tissue models and flux-limited chemotaxis for multicellular growing systems

TL;DR: The derivation of macroscopic tissue models are derived from the underlying description delivered by a class of equations that models binary mixtures of multicellular systems by methods of the kinetic theory for active particles.
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Mathematical topics on the modelling complex multicellular systems and tumor immune cells competition

TL;DR: The analysis is focused on the development of mathematical methods of the classical kinetic theory to model the above physical system and to recover macroscopic equation from the microscopic description.
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On the asymptotic theory from microscopic to macroscopic growing tissue models: an overview with perspectives

TL;DR: A review and critical analysis of the asymptotic limit methods focused on the derivation of macroscopic equations for a class of equations modeling complex multicellular systems by methods of the kinetic theory for active particles is presented in this article.
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Multicellular biological growing systems: hyperbolic limits towards macroscopic description

TL;DR: In this paper, the authors deal with the analysis of the asymptotic limit towards the derivation of hyperbolic macroscopic equations for a class of equations modeling complex multicellular systems.