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Acoustic behavior associated with cooperative task success in bottlenose dolphins (Tursiops truncatus)

机译:与宽吻海豚合作任务成功相关的声学行为(Tursiops truncatus)

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摘要

Although many species have proven capable of cooperating to achieve common goals, the role of communication in cooperation has received relatively little attention. Analysis of communication between partners is vital in determining whether actions are truly cooperative rather than serendipitous or learned via trial and error (Chalmeau and Gallo in Behav Process 35:101-111, 1996a. doi:10.1016/0376-6357(95)00049-6). Wild cetaceans often produce sounds during cooperative foraging, playing, and mating, but the role of these sounds in cooperative events is largely unknown. Here, we investigated acoustic communication between two male bottlenose dolphins while they cooperatively opened a container (Kuczaj et al. in Anim Cogn 18:543-550, 2015b. doi:10.1007/s10071-014-0822-4). Analyses of whistles, burst pulses, and bi-phonations that occurred during four contexts (i.e., no container, no animals interacting with container, one animal interacting with container, and two animals interacting with container) revealed that overall sound production rate significantly increased during container interactions. Sound production rates were also significantly higher during cooperative successes than solo successes, suggesting that the coordination of efforts rather than the apparatus itself was responsible for the phonation increase. The most common sound type during cooperative successes was burst pulse signals, similar to past recordings of cooperative events in bottlenose dolphins (Bastian in Animal sonar systems. Laboratoire de Physiologie Acoustique, Jouy-en Josas, pp 803-873, 1967; Connor and Smolker 1996).
机译:尽管已证明许多物种能够合作实现共同目标,但交流在合作中的作用受到的关注相对较少。合作伙伴之间的交流分析对于确定行动是真正的合作而不是偶然的还是通过试错来学习是至关重要的(Chalmeau和Gallo在Behav Process 35:101-111,1996a。doi:10.1016 / 0376-6357(95)00049- 6)。鲸类鲸在合作觅食,玩耍和交配时通常会发出声音,但是这些声音在合作事件中的作用尚不清楚。在这里,我们研究了两只雄性宽吻海豚在合作打开一个容器时的声音交流(Kuczaj等人,Anim Cogn 18:543-550,2015b。doi:10.1007 / s10071-014-0822-4)。对四种情况下(例如,没有容器,没有动物与容器交互,一只动物与容器交互以及两只动物与容器交互)发生的口哨声,爆发脉冲和双音的分析表明,在此期间,总体声音产生率显着提高容器交互。合作成功期间的声音生产率也大大高于个人成功,这表明努力的协调而不是设备本身是发声增加的原因。合作成功期间最常见的声音类型是突发脉冲信号,类似于过去在宽吻海豚中进行合作事件的记录(动物声纳系统中的巴斯蒂安语。实验室生理学声学,Jouy-en Josas,pp 803-873,1967; Connor和Smolker 1996)。

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