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Spatio-Temporal Dynamics in Collective Frog Choruses Examined by Mathematical Modeling and Field Observations

机译:数学建模和实地观察研究的蛙蛙合唱团的时空动态

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This paper reports theoretical and experimental studies on spatio-temporal dynamics in the choruses of male Japanese tree frogs. First, we theoretically model their calling times and positions as a system of coupled mobile oscillators. Numerical simulation of the model as well as calculation of the order parameters show that the spatio-temporal dynamics exhibits bistability between two-cluster antisynchronization and wavy antisynchronization, by assuming that the frogs are attracted to the edge of a simple circular breeding site. Second, we change the shape of the breeding site from the circle to rectangles including a straight line, and evaluate the stability of two-cluster and wavy antisynchronization. Numerical simulation shows that two-cluster antisynchronization is more frequently observed than wavy antisynchronization. Finally, we recorded frog choruses at an actual paddy field using our sound-imaging method. Analysis of the video demonstrated a consistent result with the aforementioned simulation: namely, two-cluster antisynchronization was more frequently realized.
机译:本文报道了有关雄性日本树蛙合唱时空动态的理论和实验研究。首先,我们在理论上将它们的呼叫时间和位置建模为耦合移动振荡器的系统。该模型的数值模拟和阶数参数的计算表明,时空动力学表现出两群反同步和波浪反同步之间的双稳态,假设青蛙被吸引到一个简单的圆形繁殖点的边缘。其次,我们将繁殖点的形状从圆形更改为包括直线的矩形,并评估了两个群集和波浪状反同步的稳定性。数值模拟表明,与波状反同步相比,两群集反同步更为常见。最后,我们使用声音成像方法在实际的稻田中录制了青蛙合唱。视频分析显示与上述仿真结果一致:即,更频繁地实现了两个群集的反同步。

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