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Robustness of Self-Organised Systems to Changes in Behaviour: An Example from Real and Simulated Self-Organised Snail Aggregations

机译:自组织系统对行为变化的鲁棒性:以真实和模拟的自组织蜗牛聚集体为例

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摘要

Group or population level self-organised systems comprise many individuals displaying group-level emergent properties. Current theory indicates that individual-level behaviours have an effect on the final group-level behaviour; that is, self-organised systems are sensitive to small changes in individual behaviour. Here we examine a self-organised behaviour in relation to environmentally-driven individual-level changes in behaviour, using both natural systems and computer simulations. We demonstrate that aggregations of intertidal snails slightly decrease in size when, owing to hotter and more desiccating conditions, individuals forage for shorter periods – a seemingly non-adaptive behaviour for the snails since aggregation reduces desiccation stress. This decrease, however, only occurs in simple experimental systems (and simulations of these systems). When studied in their natural and more complex environment, and simulations of such an environment, using the same reduced foraging time, no difference in aggregation behaviour was found between hot and cool days. These results give an indication of how robust self-organised systems are to changes in individual-level behaviour. The complexity of the natural environment and the interactions of individuals with this environment, therefore, can result in self-organised systems being more resilient to individual-level changes than previously assumed.
机译:群体或人口级别的自组织系统包括显示群体级别的紧急属性的许多个人。当前的理论表明,个人层面的行为会对最终群体层面的行为产生影响。也就是说,自组织系统对个人行为的细微变化敏感。在这里,我们使用自然系统和计算机模拟来检验与环境驱动的个人行为改变有关的自组织行为。我们证明,由于温度升高和更干燥的情况,个体在较短时间内觅食时,潮间蜗牛的聚集体的大小会略有减小,这似乎是蜗牛的一种非适应性行为,因为聚集体会降低干燥应力。但是,这种减少仅发生在简单的实验系统(以及这些系统的模拟)中。在自然和更复杂的环境中进行研究,并在相同环境下进行模拟(使用相同的减少的觅食时间),在炎热的天气和凉爽的天气之间均未发现聚集行为的差异。这些结果表明,自组织系统对个人行为的改变有多么强大。因此,自然环境的复杂性以及个人与该环境的交互作用,可能导致自组织系统对个人级别的变化比以前所假设的更具弹性。

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