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Alert Signals Enhance Animal Communication In 'noisy' Environments

机译:警报信号增强了“嘈杂”环境中的动物交流

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Environmental noise that reduces the probability that animals will detect communicative signals poses a special challenge for long-range communication. The application of signal-detection theory to animal communication lead to the prediction that signals directed at distant receivers in noisy environments will begin with conspicuous "alerting" components to attract the attention of receivers, before delivery of the information-rich portion of the signal. Whether animals actually adopt this strategy is not clear, despite suggestions that alerts might exist in a variety of taxa. By using a combination of behavioral observations and experimental manipulations with robotic lizard "playbacks," we show that free-living territorial Anolis lizards add an "alert" to visual displays when communicating to distant receivers in situations of poor visibility, and that these introductory alerts in turn enhance signal detection in adverse signaling conditions. Our results show that Anolis lizards are able to evaluate environmental conditions that affect the degradation of long-distance signals and adjust their behavior accordingly. This study demonstrates that free-living animals enhance the efficiency of long-range communication through the modulation of signal design and the facultative addition of an alert. Our findings confirm that alert signals are an important strategy for communicating in "noisy" conditions and suggest a reexamination of the existence of alerts in other animals relying on long-range communication.
机译:降低动物探测到交流信号的可能性的环境噪声对远程交流提出了特殊的挑战。信号检测理论在动物通信中的应用导致预测,在嘈杂环境中,定向到远处接收器的信号将在传递信号的信息丰富部分之前以明显的“报警”组件开始,以引起接收器的注意。尽管有人建议在各种生物分类中可能存在警报,但尚不清楚动物是否真正采用这种策略。通过结合使用行为观察和实验操作以及机器人蜥蜴的“回放”,我们发现,在可见性较差的情况下,与远处的接收者进行通信时,自由居住的领土Anolis蜥蜴会在视觉显示上添加“警报”,并且这些介绍性警报继而增强了在不利信令条件下的信号检测。我们的结果表明,Anolis蜥蜴能够评估影响长距离信号衰减的环境条件,并相应地调整其行为。这项研究表明,自由活动的动物通过调制信号设计和增加警报功能来提高远程通讯的效率。我们的发现证实,警报信号是在“嘈杂”条件下进行交流的重要策略,并建议重新检查依赖于远程交流的其他动物中警报的存在。

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