Department of Biology, Universiti Brunei Darussalam, Gadong, Brunei Darussalam.
PLoS One. 2012;7(5):e37965. doi: 10.1371/journal.pone.0037965. Epub 2012 May 24.
High background noise is an impediment to signal detection and perception. We report the use of multiple solutions to improve signal perception in the acoustic and visual modality by the Bornean rock frog, Staurois parvus. We discovered that vocal communication was not impaired by continuous abiotic background noise characterised by fast-flowing water. Males modified amplitude, pitch, repetition rate and duration of notes within their advertisement call. The difference in sound pressure between advertisement calls and background noise at the call dominant frequency of 5578 Hz was 8 dB, a difference sufficient for receiver detection. In addition, males used several visual signals to communicate with conspecifics with foot flagging and foot flashing being the most common and conspicuous visual displays, followed by arm waving, upright posture, crouching, and an open-mouth display. We used acoustic playback experiments to test the efficacy-based alerting signal hypothesis of multimodal communication. In support of the alerting hypothesis, we found that acoustic signals and foot flagging are functionally linked with advertisement calling preceding foot flagging. We conclude that S. parvus has solved the problem of continuous broadband low-frequency noise by both modifying its advertisement call in multiple ways and by using numerous visual signals. This is the first example of a frog using multiple acoustic and visual solutions to communicate in an environment characterised by continuous noise.
背景噪音过高会对信号检测和感知造成干扰。我们报告了使用多种解决方案来提高婆罗洲岩蛙(Staurois parvus)在声学和视觉模态中的信号感知能力。我们发现,连续的生物噪声(如快速流动的水)并不会对其发声通讯造成影响。雄蛙会通过调整鸣叫中的振幅、音高、重复率和持续时间来改变鸣声。在其鸣叫的主频率 5578Hz 处,鸣叫声与背景噪声的声压差为 8dB,这个差值足以被接收者察觉。此外,雄蛙还会使用多种视觉信号与同种个体进行交流,其中最常见和最显著的视觉展示是脚部摆动和脚部闪烁,其次是手臂挥舞、直立姿势、蹲伏和张嘴展示。我们使用声学回放实验来测试多模态通讯中基于功效的警戒信号假说。实验结果支持了警戒假说,因为我们发现,在脚部摆动之前,声学信号和脚部摆动与鸣叫之间存在功能联系。综上,我们认为,S. parvus 通过多种方式调整其鸣叫并使用多种视觉信号,解决了持续存在的宽带低频噪声问题。这是首例青蛙在连续噪声环境中使用多种声学和视觉解决方案进行通讯的案例。