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Frédéric Boudon

Researcher at French Institute for Research in Computer Science and Automation

Publications -  77
Citations -  1899

Frédéric Boudon is an academic researcher from French Institute for Research in Computer Science and Automation. The author has contributed to research in topics: Tree (data structure) & Population. The author has an hindex of 20, co-authored 62 publications receiving 1609 citations. Previous affiliations of Frédéric Boudon include SupAgro.

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OpenAlea: a visual programming and component-based software platform for plant modelling.

TL;DR: An open-source platform, OpenAlea, that provides a user-friendly environment for modellers, and advanced deployment methods, and the use of the platform to assemble several heterogeneous model components and to rapidly prototype a complex modelling scenario is presented.
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An Auxin-Mediated Shift toward Growth Isotropy Promotes Organ Formation at the Shoot Meristem in Arabidopsis

TL;DR: It is shown that the plant hormone auxin plays an important role in this process via a dual, local effect on the extracellular matrix, the cell wall, which determines cell shape, and to induce growth isotropy and organ outgrowth, auxin somehow interferes with the cortical microtubule-ordering activity of a network of proteins.
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A computational framework for 3D mechanical modeling of plant morphogenesis with cellular resolution.

TL;DR: A conceptual and modeling framework aimed at generating an integrated understanding of morphogenesis in plants is presented, based on the biophysical properties of plant cells, which are under high internal turgor pressure, and are prevented from bursting because of the presence of a rigid cell wall.
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PlantGL: A Python-based geometric library for 3D plant modelling at different scales

TL;DR: PlantGL, an open-source graphic toolkit for the creation, simulation and analysis of 3D virtual plants, is presented, which makes it a powerful user-interactive platform for plant modeling in various biological application domains.
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L-Py: An L-System Simulation Framework for Modeling Plant Architecture Development Based on a Dynamic Language

TL;DR: This work presents an adaptation of L-systems to the Python language, a popular and powerful open-license dynamic language, and shows that the use of dynamic language properties makes it possible to enhance the development of plant growth models.