论文标题

蜂巢几何形状塑造蜜蜂菌落的募集率

Hive geometry shapes the recruitment rate of honeybee colonies

论文作者

Bidari, Subekshya, Kilpatrick, Zachary P

论文摘要

蜂蜜蜜蜂在数百到数千个人的群体中做出有关觅食和巢穴选择的决定。为了有效地做出这些决定,需要在空间分布的组中进行交流。但是,在集体决策的模型中,蜂蜜蜜蜂交流的时空动力学大多被忽略了,主要集中于舆论动态的平均野外模型。我们分析了巢或蜂巢的空间特性,以及具有不同信念状态(不承诺或承诺)的个体的运动,即使用Hive内的集体决策模型会影响信息传输的速度。 Honeybees Waggle-Dance以强度是Waggler浓度的阈值非线性函数的募集。我们的模型从将蜂巢视为离散斑块链到连续线(长狭窄的蜂巢)的范围。人口最迹象的招募和分区化人群的结合在快速信息传播与强大的种群分散和招募失败之间产生了权衡,这是由于人口过度扩散而导致的招募失败,并且还产生了有效的群体信号检测机制,从而阻止了招募对低质量对象的招募。

Honey bees make decisions regarding foraging and nest-site selection in groups ranging from hundreds to thousands of individuals. To effectively make these decisions bees need to communicate within a spatially distributed group. However, the spatiotemporal dynamics of honey bee communication have been mostly overlooked in models of collective decisions, focusing primarily on mean field models of opinion dynamics. We analyze how the spatial properties of the nest or hive, and the movement of individuals with different belief states (uncommitted or committed) therein affect the rate of information transmission using spatially-extended models of collective decision-making within a hive. Honeybees waggle-dance to recruit conspecifics with an intensity that is a threshold nonlinear function of the waggler concentration. Our models range from treating the hive as a chain of discrete patches to a continuous line (long narrow hive). The combination of population-thresholded recruitment and compartmentalized populations generates tradeoffs between rapid information propagation with strong population dispersal and recruitment failures resulting from excessive population diffusion and also creates an effective colony-level signal-detection mechanism whereby recruitment to low quality objectives is blocked.

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