On multiscale approaches to three-dimensional modelling of morphogenesis.

Chaturvedi, R; Huang, C; Kazmierczak, B; Schneider, T; Izaguirre, J A; Glimm, T; Hentschel, H G E; Glazier, J A et al. · J R Soc Interface · 2005

basic_science · Level V

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Abstract

In this paper we present the foundation of a unified, object-oriented, three-dimensional biomodelling environment, which allows us to integrate multiple submodels at scales from subcellular to those of tissues and organs. Our current implementation combines a modified discrete model from statistical mechanics, the Cellular Potts Model, with a continuum reaction-diffusion model and a state automaton with well-defined conditions for cell differentiation transitions to model genetic regulation. This environment allows us to rapidly and compactly create computational models of a class of complex-developmental phenomena. To illustrate model development, we simulate a simplified version of the formation of the skeletal pattern in a growing embryonic vertebrate limb.

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