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Critical Song Features for Auditory Pattern Recognition in Crickets

机译:板球听觉模式识别的关键歌曲功能

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摘要

Many different invertebrate and vertebrate species use acoustic communication for pair formation. In the cricket Gryllus bimaculatus, females recognize their species-specific calling song and localize singing males by positive phonotaxis. The song pattern of males has a clear structure consisting of brief and regular pulses that are grouped into repetitive chirps. Information is thus present on a short and a long time scale. Here, we ask which structural features of the song critically determine the phonotactic performance. To this end we employed artificial neural networks to analyze a large body of behavioral data that measured females’ phonotactic behavior under systematic variation of artificially generated song patterns. In a first step we used four non-redundant descriptive temporal features to predict the female response. The model prediction showed a high correlation with the experimental results. We used this behavioral model to explore the integration of the two different time scales. Our result suggested that only an attractive pulse structure in combination with an attractive chirp structure reliably induced phonotactic behavior to signals. In a further step we investigated all feature sets, each one consisting of a different combination of eight proposed temporal features. We identified feature sets of size two, three, and four that achieve highest prediction power by using the pulse period from the short time scale plus additional information from the long time scale.
机译:许多不同的无脊椎动物和脊椎动物使用声通信来形成配对。在the Gryllus bimaculatus中,雌性识别其特定物种的鸣叫歌,并通过积极的视音律定位雄性唱歌的雄性。雄性的歌曲模式具有清晰的结构,由简短的和规则的脉冲组成,这些脉冲被分为重复的chi。因此,信息以短时间和长时间尺度存在。在这里,我们要问这首歌的哪些结构特征决定了音律的表现。为此,我们使用人工神经网络来分析大量行为数据,这些数据测量了在人工生成的歌曲模式的系统变化下女性的变音行为。第一步,我们使用四个非冗余的描述性时间特征来预测女性反应。模型预测与实验结果高度相关。我们使用这种行为模型来探索两个不同时间尺度的整合。我们的结果表明,只有有吸引力的脉冲结构与有吸引力的线性调频脉冲结构相结合,才能可靠地引起信号的光变行为。在下一步中,我们研究了所有特征集,每个特征集由八个提议的时间特征的不同组合组成。我们通过使用短时标中的脉冲周期以及长时标中的其他信息,确定了具有最高预测能力的大小为2、3和4的特征集。

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