Maciejewski Wes
Department of Mathematics and Statistics, Queen's University, Kingston, Ontario, Canada.
J Theor Biol. 2010 Aug 21;265(4):604-8. doi: 10.1016/j.jtbi.2010.05.025. Epub 2010 Jun 9.
In nature, orb-web spinning spiders are often observed residing on the hub of their web, facing down. An explanation of this phenomenon has only recently appeared in the literature [Zschokke, S., Nakata, K., 2010. Spider orientation and hub position in orb webs. Naturwissenschaften 97, 43-52, doi:10.1007/s00114-009-0609-7], although a similar explanation is implicit in Masters and Moffat [1983. A functional explanation of top-bottom asymmetry in vertical orbwebs. Animal Behaviour 31, 351-391, doi:10.1016/S0003-3472(83)80010-4] and ap Rhisiart and Vollrath [1994. Design features of the orb web of the spider, Araneus diadematus. Behavioural Ecology 5, 280-287]. In the present article a mathematical description of the region a spider can reach in a fixed amount of time, based on the velocity, turning rate, and initial orientation of a spider, is proposed. Maximizing the amount of prey caught on the web in the long term corresponds to maximizing the area of the region. The orientation that maximizes this area is shown to be downwards. The paper concludes with a conjectured explanation for the vertical asymmetry of orb-webs.
在自然界中,人们经常观察到织圆网的蜘蛛倒挂在它们蛛网的中心。这种现象的一种解释直到最近才出现在文献中[Zschokke, S., Nakata, K., 2010. 圆网中蜘蛛的方向和中心位置。《自然科学》97, 43 - 52, doi:10.1007/s00114-009-0609-7],尽管类似的解释在马斯特斯和莫法特[1983. 垂直圆网上下不对称的功能解释。《动物行为》31, 351 - 391, doi:10.1016/S0003-3472(83)80010-4]以及阿普·里斯亚特和沃尔拉特[1994. 蜘蛛Araneus diadematus圆网的设计特征。《行为生态学》5, 280 - 287]的研究中已有暗示。在本文中,基于蜘蛛的速度、转向速率和初始方向,提出了一个关于蜘蛛在固定时间内能够到达区域的数学描述。从长期来看,使蛛网上捕获的猎物数量最大化相当于使该区域的面积最大化。结果表明,使这个面积最大化的方向是向下的。本文最后对圆网的垂直不对称性提出了一种推测性的解释。