Peters R A, Evans C S
Animal Behaviour Laboratory, Department of Psychology, Macquarie University, 2109, Sydney, NSW, Australia.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2003 Jun;189(6):447-59. doi: 10.1007/s00359-003-0423-1. Epub 2003 May 20.
Visual systems are typically selective in their response to movement. This attribute facilitates the identification of functionally important motion events. Here we show that the complex push-up display produced by male Jacky dragons ( Amphibolurus muricatus) is likely to have been shaped by an interaction between typical signalling conditions and the sensory properties of receivers. We use novel techniques to define the structure of the signal and of a range of typical moving backgrounds in terms of direction, speed, acceleration and sweep area. Results allow us to estimate the relative conspicuousness of each motor pattern in the stereotyped sequence of which displays are composed. The introductory tail-flick sweeps a large region of the visual field, is sustained for much longer than other components, and has velocity characteristics that ensure it will not be filtered in the same way as wind-blown vegetation. These findings are consistent with the idea that the tail-flick has an alerting function. Quantitative analyses of movement-based signals can hence provide insights into sensory processes, which should facilitate identification of the selective forces responsible for structure. Results will complement the detailed models now available to account for the design of static visual signals.
视觉系统通常对运动的反应具有选择性。这一特性有助于识别功能上重要的运动事件。在此我们表明,雄性鬃狮蜥(Amphibolurus muricatus)产生的复杂俯卧撑展示行为,很可能是由典型信号传递条件与接收者的感官特性之间的相互作用所塑造的。我们运用新技术,从方向、速度、加速度和扫掠面积等方面来定义信号以及一系列典型移动背景的结构。研究结果使我们能够估计构成展示行为的定型序列中每个运动模式的相对显著性。开场的甩尾动作扫过视野的大片区域,持续时间比其他部分长得多,并且具有速度特征,确保它不会像被风吹动的植被那样被过滤掉。这些发现与甩尾具有警示功能的观点相一致。因此,基于运动的信号的定量分析能够为感官过程提供见解,这应有助于识别导致结构形成的选择力。研究结果将补充现有的用于解释静态视觉信号设计的详细模型。