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首页> 外文期刊>The Journal of Experimental Biology >The mechanical basis of Drosophila audition
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The mechanical basis of Drosophila audition

机译:果蝇试听的机械基础

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In Drosophila melanogaster, antennal hearing organs mediate the detection of conspecific songs. Combining laser Doppler vibrometry, acoustic near-field measurements and anatomical analysis, we have investigated the first steps in Drosophila audition, i.e. the conversion of acoustic energy into mechanical vibrations and the subsequent transmission of vibrations to the auditory receptors in the base of the antenna. Examination of the mechanical responses of the antennal structures established that the distal antennal parts (the funiculus and the arista) together constitute a mechanical entity, the sound receiver. Unconventionally, this receiver is asymmetric, resulting in an unusual, rotatory pattern of vibration; in the presence of sound, the arista and the funiculus together rotate about the longitudinal axis of the latter. According to the mechanical response characteristics, the antennal receiver represents a moderately damped simple harmonic oscillator. The receiver's resonance frequency increases continuously with the stimulus intensity, demonstrating the presence of a non-linear stiffness that may be introduced by the auditory sense organ. This surprising, non-linear effect is relevant for close-range acoustic communication in Drosophila; by improving antennal sensitivity at low song intensities and reducing sensitivity when intensity is high, it brings about dynamic range compression in the fly's auditory system.
机译:在果蝇中,触角听觉器官介导了同种歌曲的检测。结合激光多普勒振动计,声学近场测量和解剖学分析,我们研究了果蝇试听的第一步,即将声能转换为机械振动,以及随后将振动传递给天线底部的听觉受体。对触角结构的机械响应的检查确定了远端触角部分(真菌和剑突)共同构成了一个机械实体,即声音接收器。非常规地,该接收器是不对称的,从而导致异常的旋转振动模式。在有声音的情况下,亚里斯塔和真菌共同绕后者的纵轴旋转。根据机械响应特性,天线接收器代表一个中等阻尼的简单谐波振荡器。接收器的共振频率随着刺激强度的增加而连续增加,表明存在可能由听觉器官引入的非线性刚度。这种令人惊讶的非线性效应与果蝇的近距离声通信有关。通过提高低歌曲强度时的天线灵敏度并降低强度较高时的灵敏度,可以在苍蝇的听觉系统中实现动态范围压缩。

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