Department of Mathematics, Ariel University, Ariel, Israel.
Department of Cancer Biology, Cancer Institute, University College London, London, UK.
J R Soc Interface. 2024 Jul;21(216):20230746. doi: 10.1098/rsif.2023.0746. Epub 2024 Jul 17.
Navigation of male moths towards females during the mating search offers a unique perspective on the exploration-exploitation (EE) model in decision-making. This study uses the EE model to explain male moth pheromone-driven flight paths. Wind tunnel measurements and three-dimensional tracking using infrared cameras have been leveraged to gain insights into male moth behaviour. During the experiments in the wind tunnel, disturbance to the airflow has been added and the effect of increased fluctuations on moth flights has been analysed, in the context of the proposed EE model. The exploration and exploitation phases are separated using a genetic algorithm to the experimentally obtained dataset of moth three-dimensional trajectories. First, the exploration-to-exploitation rate (EER) increases with distance from the source of the female pheromone is demonstrated, which can be explained in the context of the EE model. Furthermore, our findings reveal a compelling relationship between EER and increased flow fluctuations near the pheromone source. Using an olfactory navigation simulation and our moth-inspired navigation model, the phenomenon where male moths exhibit an enhanced EER as turbulence levels increase is explained. This research extends our understanding of optimal navigation strategies based on general biological EE models and supports the development of bioinspired navigation algorithms.
雄蛾在交配搜索过程中向雌蛾的导航为决策中的探索-利用(EE)模型提供了独特的视角。本研究利用 EE 模型来解释雄蛾信息素驱动的飞行路径。风洞测量和使用红外摄像机的三维跟踪已被用于深入了解雄蛾的行为。在风洞中进行的实验中,增加了对气流的干扰,并分析了增加的波动对飞蛾飞行的影响,这是在提出的 EE 模型的背景下进行的。使用遗传算法将实验获得的雄蛾三维轨迹数据集分离为探索和利用阶段。首先,展示了雄蛾从雌性信息素源的距离与探索-利用率(EER)之间的增加关系,这可以在 EE 模型的背景下解释。此外,我们的研究结果揭示了 EER 与信息素源附近的流动波动增加之间存在引人注目的关系。通过使用嗅觉导航模拟和我们受飞蛾启发的导航模型,解释了雄蛾在湍流水平增加时表现出增强的 EER 的现象。这项研究扩展了我们对基于一般生物 EE 模型的最佳导航策略的理解,并支持了仿生导航算法的发展。