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Calling amplitude flexibility and acoustic spacing in the territorial frog Allobates femoralis

机译:领土蛙属股骨股骨头的幅度灵活性和声学间距

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Most male frogs produce calls to attract females and repel rivals. The transmission of these calls can be affected by many acoustic and environmental characteristics, which can influence the detection and decoding of the signal by the receiver. Calling-perch height has a strong influence on sound propagation and acoustic spacing with neighboring males, but how frogs optimize their calling behavior in this context is poorly understood. In this study, we investigated if and how frogs can adjust the calling energy in the context of acoustic spacing. Our aim was to evaluate the relationship between calling-perch height, nearest-neighbor distance, and sound-pressure level in the brilliant-thighed poison frog Allobates femoralis. We found that frogs flexibly adjust the calling amplitude according to the calling-perch height without affecting the effectiveness signal propagation. Accompanying signal propagation experiments demonstrated that calls produced with lower amplitude from higher perches propagate similar to louder calls from the ground. Our results suggest an adjustment to the hypothesis of a general positive effect of calling-perch height on signal effectiveness, where highly territorial frogs adjust their calling behavior to reduce energy expenditure and optimize acoustic communication with conspecifics. Significance statement In acoustically communicating species, sound propagates better when broadcasted from elevated positions. However, callers may adjust their calling behavior to optimize the sound transmission under ecological constraints. By using a correlative and manipulative approach, we show in a poison frog model that males can adjust their calling amplitude according to the calling-perch height. We then discuss that this calling adjustment optimizes the acoustic spacing between conspecific males and reduces energy consumption.
机译:大多数男性青蛙都会产生呼叫,以吸引女性和呼吸竞争对手。这些呼叫的传输可能受到许多声学和环境特征的影响,这可以影响接收器的信号的检测和解码。呼叫 - 鲈鱼高度对与邻近男性的声音传播和声学间距产生了强烈影响,但在这种情况下,青蛙如何优化他们的呼叫行为是很差的。在这项研究中,我们调查了IF以及青蛙如何在声学间距的背景下调整呼叫能量。我们的目标是评估呼叫 - 栖息地高度,最近邻近距离和声压水平之间的关系。我们发现青蛙根据呼叫彼得高度灵活地调整呼叫幅度,而不会影响有效信号传播。伴随信号传播实验证明,从较高栖息地的较低幅度产生的呼叫传播类似于来自地面的响亮的呼叫。我们的结果表明,对信号效率的呼叫 - 鲈鱼高度一般积极影响的假设进行了调整,其中高度领土青蛙调整他们的呼叫行为,以减少能源支出,并优化与Compecifics的声学通信。声学传播物种中的重要性语句,当从升高的位置广播时声音传播更好。但是,呼叫者可以调整他们的呼叫行为以在生态约束下优化声音传输。通过使用相关性和操纵方法,我们在毒物毒品模型中展示了男性可以根据呼叫栖息地调整呼叫幅度。然后,我们讨论该呼叫调整优化了诸如特异性雄性之间的声学​​间距并降低了能量消耗。

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