首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >The fractal nature of nature: power laws, ecological complexity and biodiversity
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The fractal nature of nature: power laws, ecological complexity and biodiversity

机译:自然的分形性质:幂律,生态复杂性和生物多样性

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Underlying the diversity of life and the complexity of ecology is order that reflects the operation of fundamental physical and biological processes. Power laws describe empirical scaling relationships that are emergent quantitative features of biodiversity. These features are patterns of structure or dynamics that are self-similar or fractal-like over many orders of magnitude. Power laws allow extrapolation and prediction over a wide range of scales. Some appear to be universal, occurring in virtually all taxa of organisms and types of environments. They offer clues to underlying mechanisms that powerfully constrain biodiversity. We describe recent progress and future prospects for understanding the mechanisms that generate these power laws, and for explaining the diversity of species and complexity of ecosystems in terms of fundamental principles of physical and biological science. [References: 79]
机译:生活多样性和生态复杂性的根本是反映基本物理和生物过程操作的顺序。幂定律描述了经验尺度关系,这些关系是生物多样性的新兴定量特征。这些特征是在多个数量级上自相似或分形的结构或动力学模式。幂定律允许在很大范围内进行外推和预测。有些似乎是普遍的,几乎发生在所有生物类群和环境类型中。它们为强有力地限制生物多样性的潜在机制提供了线索。我们描述了最近的进展和未来的前景,以了解产生这些幂律的机制,并根据物理和生物科学的基本原理来解释物种的多样性和生态系统的复杂性。 [参考:79]

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