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Stability and complexity in model ecosystems.

Robert M. May
- Vol. 6, pp 1-235
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The article was published on 1973-01-01 and is currently open access. It has received 5524 citations till now.

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Biodiversity and environmental stability

TL;DR: Diversity is created and maintained by a range of different processes: overlap of habitat on gradients; a dynamic mosaic of communities; and accumulation and evolution of taxa in extremely stable areas.
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Invasion of a stream food web by a new top predator

TL;DR: A new top predator, the dragonfly Cordulegaster boltonii Donovan, ‘invaded’ a stream with a well-described food web, indicating the potential for strong apparent competition within the web.
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Data-driven non-Markovian closure models

TL;DR: In this paper, a multilayer stochastic model (MSM) is introduced to obtain stable and efficient data-driven closure models by using a multivariate time series of partial observations from a large-dimensional system; and comparing these closure models with the optimal closures predicted by the Mori-Zwanzig formalism of statistical physics.
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Models for the population dynamics of the yellow fever mosquito, Aedes aegypti

TL;DR: On note des fluctuations dans the taille des populations adultes and une forte mortalite larvaire dans la taille oficiaison de population adultes et une fortes mortalite Larvaire.
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Trophic coherence determines food-web stability

TL;DR: It is shown that trophic coherence—a hitherto ignored feature of food webs that current structural models fail to reproduce—is a better statistical predictor of linear stability than size or complexity, and it is proved that a maximally coherent network with constant interaction strengths will always be linearly stable.