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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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楼主: bradycardia
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Domain Observation and Interpretation,heral tissues. However, because the pressure and flow curves are not a simple ratio, it has long been recognized that the cardiovascular system functions in more complex fashion than merely a simple resistance to blood flow. Blood pressure is highest at the beginning of the systemic circulation; the
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https://doi.org/10.1007/978-3-642-81516-4self-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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https://doi.org/10.1007/978-3-642-81516-4iew, the mathematical description of such diversity constitutes a stimulating non-equilibrium dynamical problem [2,7–13]. In general, the complexity of the growth pattern increases as the environmental conditions become less favorable. Bacteria respond to adverse growth conditions by developing soph
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https://doi.org/10.1007/978-3-642-81516-4self-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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Branching in Plantsto plants, but that it is a characteristic of sessile life; mobility and branching are mutually exclusive. No plant, either fossil or extant, is completely devoid of branching (= ramification) and this is the reason why the term “branching” in itself evokes the plant kingdom. As a matter of fact, bo
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Two Symmetries Linking Biological and Physical Branching Morphogenesis allow the tissue to get larger. Also, it should be added in such an introduction, that it is not very easy either to find relationships between biological branching processes. For example, Leonardo da Vinci thought that vessel growth and plant growth were similar, but was not able to provide a link
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