Hansen Matheus, Lanes Gabriel C, Brito Vinícius L G, Leonel Edson D
Instituto de Ciência e Tecnologia, Universidade Federal de São Paulo, São José dos Campos, CEP 12247-014, SP, Brazil.
Instituto de Biologia, Universidade Federal de Uberlândia, Uberlândia, CEP 38405-320, MG, Brazil.
Phys Rev E. 2021 Sep;104(3-1):034409. doi: 10.1103/PhysRevE.104.034409.
Buzz pollination is described using a mathematical model considering a billiard approach. Applications to a rough morphology of a typical poricidal anther of a tomato flower (Solanum lycopersicum) experiencing vibrations applied by a bumblebee (Bombus terrestris) are made. The anther is described by a rectangular billiard with a pore on its tip while the borders are perturbed by specific oscillations according to the vibrational properties of the bumblebee. Pollen grains are considered as noninteracting particles that can escape through the pore. Our results not only recover some observed data but also provide a possible answer to an open problem involving buzz pollination.
利用考虑台球方法的数学模型描述了 buzz 授粉。将该模型应用于番茄花(番茄)典型的具孔花药的粗糙形态,该花药受到大黄蜂(地熊蜂)施加的振动影响。花药由一个顶端有孔的矩形台球来描述,而边界根据大黄蜂的振动特性受到特定振荡的干扰。花粉粒被视为可以通过孔逸出的非相互作用粒子。我们的结果不仅恢复了一些观测数据,还为一个涉及 buzz 授粉的开放性问题提供了可能的答案。