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首页> 外文期刊>Journal of Comparative Physiology A >Synchrony during acoustic interactions in the bushcricket Mecopoda ‘Chirper’ (Tettigoniidae:Orthoptera) is generated by a combination of chirp-by-chirp resetting and change in intrinsic chirp rate
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Synchrony during acoustic interactions in the bushcricket Mecopoda ‘Chirper’ (Tettigoniidae:Orthoptera) is generated by a combination of chirp-by-chirp resetting and change in intrinsic chirp rate

机译:bush鸣叫过程中的声音交互过程中的同步,是通过逐个setting复位和固有intrinsic速率变化共同产生的。

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摘要

In several bushcricket species, individual males synchronise their chirps during acoustic interactions. Synchrony is imperfect with the chirps of one male leading or lagging the other by a few milliseconds. Imperfect synchrony is believed to have evolved in response to female preferences for leading chirps. We investigated the mechanism underlying synchrony in the bushcricket species Mecopoda ‘Chirper’ from Southern India using playback experiments and simulations of pairwise interactions. We also investigated whether intrinsic chirp period is a good predictor of leading probability during interactions between males. The mechanism underlying synchrony in this species differs from previously reported mechanisms in that it involves both a change in the oscillator’s intrinsic rate and resetting on a chirp-by-chirp basis. The form of the phase response curve differs from those of previously reported firefly and bushcricket species including the closely related Malaysian species Mecopoda elongata. Simulations exploring oscillator properties showed that the outcome of pairwise interactions was independent of initial phase and alternation was not possible. Solo intrinsic chirp period was a relatively good predictor of leading probability. However, changing the intrinsic period during interactions could enable males with longer periods to lead during acoustic interactions.
机译:在几种丛林cri物种中,各个雄性在声相互作用期间会同步鸣叫。同步不完美,一只雄性的leading鸣声领先或滞后另一种几毫秒。人们认为,不同步是由于女性对主导鸣叫的偏好而发展的。我们使用回放实验和成对相互作用的模拟,研究了印度南部丛林Me物种Mecopoda“爬行者”的同步机制。我们还调查了内在的period期是否是男性之间互动中领先概率的良好预测指标。该物种中潜在的同步机制与先前报道的机制不同,因为它既涉及振荡器固有频率的变化,又涉及逐个线性调频的复位。相响应曲线的形式不同于先前报道的萤火虫和丛林cri物种,包括与之密切相关的马来西亚物种Mecopoda elongata。探索振荡器特性的仿真表明,成对相互作用的结果与初始相位无关,并且不可能进行交替。独奏intrinsic声周期是领先概率的相对较好的预测指标。但是,在交互过程中改变固有周期可以使更长周期的雄性在声学交互过程中处于领先地位。

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