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Song pattern recognition in crickets based on a delay-line and coincidence-detector mechanism

机译:基于延迟线和重合检测器机制的板球歌曲模式识别

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摘要

Acoustic communication requires filter mechanisms to process and recognize key features of the perceived signals. We analysed such a filter mechanism in field crickets (Gryllus bimaculatus), which communicate with species-specific repetitive patterns of sound pulses and chirps. A delay-line and coincidence-detection mechanism, in which each sound pulse has an impact on the processing of the following pulse, is implicated to underlie the recognition of the species-specific pulse pattern. Based on this concept, we hypothesized that altering the duration of a single pulse or inter-pulse interval in three-pulse chirps will lead to different behavioural responses. Phonotaxis was tested in female crickets walking on a trackball exposed to different sound paradigms. Changing the duration of either the first, second or third pulse of the chirps led to three different characteristic tuning curves. Long first pulses decreased the phonotactic response whereas phonotaxis remained strong when the third pulse was long. Chirps with three pulses of increasing duration of 5, 20 and 50 ms elicited phonotaxis, but the chirps were not attractive when played in reverse order. This demonstrates specific, pulse duration-dependent effects while sequences of pulses are processed. The data are in agreement with a mechanism in which processing of a sound pulse has an effect on the processing of the subsequent pulse, as outlined in the flow of activity in a delay-line and coincidence-detector circuit. Additionally our data reveal a substantial increase in the gain of phonotaxis, when the number of pulses of a chirp is increased from two to three.
机译:声学通信需要滤波器机制来处理和识别感知信号的关键特征。我们分析了田field(Gryllus bimaculatus)中的这种过滤机制,,与特定种类的重复性声音脉冲和chi通信。延迟线和重合检测机制(其中每个声音脉冲都会影响后续脉冲的处理)被暗示为特定物种脉冲模式的识别基础。基于此概念,我们假设改变三脉冲线性调频脉冲中单个脉冲或脉冲间间隔的持续时间将导致不同的行为响应。在女性not中,在暴露于不同声音范式的轨迹球上行走时,测试了视轴性。改变线性调频脉冲的第一,第二或第三脉冲的持续时间会导致三个不同的特性调谐曲线。当第三个脉冲较长时,较长的第一个脉冲会降低音律反应,而音律保持较强。具有增加5、20和50 ms持续时间的三个脉冲的线性调频脉冲会引起视错觉,但是以相反的顺序演奏时,线性调频脉冲没有吸引力。这证明了在处理脉冲序列时特定的,与脉冲持续时间有关的效应。数据与一种机制一致,在这种机制中,声音脉冲的处理会影响后续脉冲的处理,如延迟线和同时检测电路中的活动流程所概述的那样。另外,当线性调频脉冲的数量从2增加到3时,我们的数据显示了音轴增益的大幅增加。

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