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Sequential Filtering Processes Shape Feature Detection in Crickets: A Framework for Song Pattern Recognition

机译:Cri的顺序过滤过程形状特征检测:歌曲模式识别的框架

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摘要

Intraspecific acoustic communication requires filtering processes and feature detectors in the auditory pathway of the receiver for the recognition of species-specific signals. Insects like acoustically communicating crickets allow describing and analysing the mechanisms underlying auditory processing at the behavioral and neural level. Female crickets approach male calling song, their phonotactic behavior is tuned to the characteristic features of the song, such as the carrier frequency and the temporal pattern of sound pulses. Data from behavioral experiments and from neural recordings at different stages of processing in the auditory pathway lead to a concept of serially arranged filtering mechanisms. These encompass a filter for the carrier frequency at the level of the hearing organ, and the pulse duration through phasic onset responses of afferents and reciprocal inhibition of thoracic interneurons. Further, processing by a delay line and coincidence detector circuit in the brain leads to feature detecting neurons that specifically respond to the species-specific pulse rate, and match the characteristics of the phonotactic response. This same circuit may also control the response to the species-specific chirp pattern. Based on these serial filters and the feature detecting mechanism, female phonotactic behavior is shaped and tuned to the characteristic properties of male calling song.
机译:种内声学通信需要在接收器的听觉路径中进行滤波过程和特征检测器,以识别特定种类的信号。像like这样的昆虫可以在行为和神经层面描述和分析听觉处理的基础机制。雌接近雄性鸣叫的歌曲,其变音行为被调节到歌曲的特征,例如载波频率和声音脉冲的时间模式。来自行为实验的数据以及来自听觉通路中不同处理阶段的神经记录的数据导致了串行排列过滤机制的概念。这些包括在听力器官水平的载波频率的滤波器,以及通过传入神经的相位发作响应和对胸腔中神经元的相互抑制而产生的脉冲持续时间。此外,通过大脑中的延迟线和重合检测器电路进行处理会导致特征检测神经元,这些神经元特异性地响应物种特定的脉冲频率,并与音速反应的特征相匹配。该相同电路还可以控制对物种特定线性调频模式的响应。基于这些串行过滤器和特征检测机制,可将女性的趋音行为定型并调整为男性主打歌曲的特征。

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