Institute of Physics, Academia Sinica, Nankang, Taipei, Taiwan, Republic of China.
PLoS One. 2011;6(9):e24200. doi: 10.1371/journal.pone.0024200. Epub 2011 Sep 19.
Simple models of insect populations with non-overlapping generations have been instrumental in understanding the mechanisms behind population cycles, including wild (chaotic) fluctuations. The presence of deterministic chaos in natural populations, however, has never been unequivocally accepted. Recently, it has been proposed that the application of chaos control theory can be useful in unravelling the complexity observed in real population data. This approach is based on structural perturbations to simple population models (population skeletons). The mechanism behind such perturbations to control chaotic dynamics thus far is model dependent and constant (in size and direction) through time. In addition, the outcome of such structurally perturbed models is [almost] always equilibrium type, which fails to commensurate with the patterns observed in population data.
METHODOLOGY/PRINCIPAL FINDINGS: We present a proportional feedback mechanism that is independent of model formulation and capable of perturbing population skeletons in an evolutionary way, as opposed to requiring constant feedbacks. We observe the same repertoire of patterns, from equilibrium states to non-chaotic aperiodic oscillations to chaotic behaviour, across different population models, in agreement with observations in real population data. Model outputs also indicate the existence of multiple attractors in some parameter regimes and this coexistence is found to depend on initial population densities or the duration of transient dynamics. Our results suggest that such a feedback mechanism may enable a better understanding of the regulatory processes in natural populations.
具有非重叠世代的简单昆虫种群模型对于理解种群周期背后的机制非常重要,包括野生(混沌)波动。然而,自然种群中确定性混沌的存在从未得到明确认可。最近,有人提出,混沌控制理论的应用可以用于揭示实际种群数据中观察到的复杂性。这种方法基于对简单种群模型(种群骨架)的结构扰动。到目前为止,这种控制混沌动力学的扰动机制是依赖于模型的,并且随着时间的推移是恒定的(大小和方向)。此外,这种结构受扰模型的结果几乎总是平衡类型的,与种群数据中观察到的模式不一致。
方法/主要发现:我们提出了一种比例反馈机制,它独立于模型的制定,能够以进化的方式对种群骨架进行扰动,而不需要恒定的反馈。我们观察到了相同的模式谱,从平衡状态到非混沌的非周期性振荡到混沌行为,跨越了不同的种群模型,与实际种群数据的观察结果一致。模型输出还表明,在某些参数范围内存在多个吸引子,这种共存取决于初始种群密度或瞬态动力学的持续时间。我们的结果表明,这种反馈机制可能有助于更好地理解自然种群中的调节过程。