The complex swarming dynamics of malaria mosquitoes emerges from simple minimally-interactive behavioral rules

Antoine Cribellier, Serge Poda, Roch Kounbobr Dabire, Abdoulaye Diabate, Olivier Roux, Florian T Muijres
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Abstract

Complex coordinated group behaviors such as bird flocking and fish schooling often rely on intricate interactions among individuals. In these groups, neighbors exhibit strong mutual attraction, alignment, and collision avoidance. Here, we tested whether insect swarms arise from similar simple behavioral rules. Using high-speed videography and agent-based modeling, we identified the behavioral rules governing mating swarms of flying malaria mosquitoes, marking the first such analysis for any insect species. We found that, unlike birds and fish, mosquito swarming behavior is driven primarily by environmental cues like the sunset horizon and ground objects. In fact, interactions between conspecifics are limited to only close-range collision avoidance behaviors. Thus, insect swarming seems fundamentally distinct from bird flocking and fish schooling.
疟疾蚊子复杂的成群动态源自简单的微交互行为规则
鸟群和鱼群等复杂的群体协调行为往往依赖于个体之间错综复杂的相互作用。在这些群体中,邻近个体表现出强烈的相互吸引、排列和避免碰撞。在这里,我们测试了昆虫群是否产生于类似的简单行为规则。利用高速摄像技术和基于代理的建模方法,我们确定了疟疾飞蚊交配群的行为规则,这是首次对任何昆虫物种进行此类分析。我们发现,与鸟类和鱼类不同,蚊群行为主要受日落地平线和地面物体等环境线索的驱动。事实上,同种昆虫之间的互动仅限于近距离的避免碰撞行为。因此,昆虫的成群行为似乎与鸟类的成群行为和鱼类的成群行为有着本质区别。
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