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首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >Calling dynamics and call synchronization in a local group of unison bout callers
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Calling dynamics and call synchronization in a local group of unison bout callers

机译:本地一组统一回合呼叫者的呼叫动态和呼叫同步

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In many species of chorusing frogs, callers can rapidly adjust their call timing with reference to neighboring callers so as to maintain call rate while minimizing acoustic interference. The rules governing the interactions, in particular, who is listening to whom are largely unknown, presumably influenced by distance between callers, caller density, and intensities of interfering calls. We report vocal interactions in a unison bout caller, the green tree frog (Hyla cinerea). Using a microphone array, we monitored bouts from a local group of six callers embedded in a larger chorus. Data were analyzed in a 21-min segment at the peak of the chorus. Callers within this group were localized and their voices were separated for analysis of spatio-temporal interactions. We show that callers in this group: (1) synchronize with one another, (2) prefer to time their calls antiphonally, almost exactly at one-third and two-thirds of the call intervals of their neighbors, (3) tolerate call collision when antiphonal calling is not possible, and (4) perform discrete phase-hopping between three preferred phases when tracking other callers. Further, call collision increases and phase-locking decreases, with increasing inter-caller spacing. We conclude that the precise phase-positioning, phase-tracking, and phase-hopping minimizes acoustic jamming while maintaining chorus synchrony
机译:在许多种类的合唱青蛙中,呼叫者可以参考邻近的呼叫者来快速调整其呼叫定时,以便在保持通话速率的同时将声音干扰降至最低。控制交互的规则(尤其是谁在听谁)在很大程度上是未知的,大概受呼叫者之间的距离,呼叫者密度和干扰呼叫强度的影响。我们报告在一个统一的回合呼叫者,绿树蛙(Hyla cinerea)中的声音交互作用。使用麦克风阵列,我们监视了嵌入较大合唱团中的六个呼叫者的本地群组的回合。在合唱峰的21分钟内分析数据。该组中的呼叫者已本地化,他们的声音被分离以分析时空相互作用。我们显示出这一组中的呼叫者:(1)彼此同步,(2)更喜欢对着他们的呼叫计时,几乎恰好是邻居呼叫间隔的三分之一和三分之二,(3)容忍呼叫冲突当无法进行对讲呼叫时,以及(4)在跟踪其他呼叫者时,在三个首选阶段之间执行离散的跳相。此外,随着呼叫者之间的间隔增加,呼叫冲突增加而锁相减少。我们得出的结论是,精确的相位定位,相位跟踪和相位跳变可最大程度地减少声学干扰,同时保持合唱同步

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