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Titlebook: Branching in Nature; Dynamics and Morphog Vincent Fleury,Jean-François Gouyet,Marc Léonetti Conference proceedings 2001 Springer-Verlag Ber

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978-3-540-41888-7Springer-Verlag Berlin Heidelberg 2001
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Adaptive Branching During Colonial Development of Lubricating Bacteriaself-organization (growth, communication, regulation and control) on the cellular and multi-cellular levels. Our approach is to use the successful conceptual framework for branching growth patterns in non-living systems as a tool to understand their significantly more complex biological counterparts.
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Centre de Physique des Houcheshttp://image.papertrans.cn/b/image/190368.jpg
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A Topology for the Penumbral Magnetic Fieldsties acquire their shapes, it is tempting to consider possible relations between the two types of morphogenesis. This direction of research was initiated by D’Arcy Thompson (1917) in his classical book “On Growth and Form”. To the present day it is still an important and open problem. The fact that
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A. Ortiz,L. H. M. Rouppe van der Voortave of branching. Depending on which plant species is considered, branching may be nihil, apical or lateral, exogenous (case of stems) or endogenous (case of roots), continuous or rhythmic, immediate (tropical plants) or delayed (plants of temperate climate), spontaneous or traumatic. Trees can be u
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https://doi.org/10.1007/978-3-642-02859-5s. This is in contrast to plant embryo development, where only a very basic structure is set up [1]. Mature plant embryos are composed of a single shoot-root axis. The primary shoot consists of a small stem, and, depending on the species, one or several cotyledons (specialized embryonic leaf-like st
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The Evershed Effect with SOT/Hinode principles might govern the ubiquity of this class of patterns. However, it is not so easy to find straightforward relationships between the physical and the biological processes, although they are dearly desired. In particular, the very complex biochemistry involved in any living tissue, which eve
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Conclusions and future directions, and division are influenced significantly by extrinsic cues, including local, systemid and environmental signals. Understanding how these cues are perceived by cells and transduced into molecular, structural and physiological asymmetries that govern morphogenesis is a major focus of plant developme
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