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An auditory feature detection circuit for sound pattern recognition

机译:用于声音模式识别的听觉特征检测电路

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摘要

From human language to birdsong and the chirps of insects, acoustic communication is based on amplitude and frequency modulation of sound signals. Whereas frequency processing starts at the level of the hearing organs, temporal features of the sound amplitude such as rhythms or pulse rates require processing by central auditory neurons. Besides several theoretical concepts, brain circuits that detect temporal features of a sound signal are poorly understood. We focused on acoustically communicating field crickets and show how five neurons in the brain of females form an auditory feature detector circuit for the pulse pattern of the male calling song. The processing is based on a coincidence detector mechanism that selectively responds when a direct neural response and an intrinsically delayed response to the sound pulses coincide. This circuit provides the basis for auditory mate recognition in field crickets and reveals a principal mechanism of sensory processing underlying the perception of temporal patterns.
机译:从人类语言到鸟鸣和昆虫的rp声,声学通信都基于声音信号的幅度和频率调制。频率处理从听力器官的水平开始,而声音幅度的时间特征(如节奏或脉搏率)则需要中枢听觉神经元进行处理。除了几个理论概念,检测声音信号的时间特征的大脑电路还知之甚少。我们专注于声学交流的field声,并展示了女性大脑中的五个神经元如何形成用于男性主打歌的脉冲模式的听觉特征检测器电路。该处理基于重合检测器机制,该重合检测器机制在直接神经响应和对声音脉冲的固有延迟响应重合时有选择地响应。该电路为田field中的听觉伴侣识别提供了基础,并揭示了感知时间模式的基础上的感觉处理的主要机制。

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