JASCO Applied Sciences, Silver Spring, MD 20902, USA.
J Exp Biol. 2012 Jan 1;215(Pt 1):152-60. doi: 10.1242/jeb.064998.
Sound-source localization behavior was studied in the plainfin midshipman fish (Porichthys notatus) by making use of the naturally occurring phonotaxis response of gravid females to playback of the male's advertisement call. The observations took place outdoors in a circular concrete tank. A dipole sound projector was placed at the center of the tank and an 80-90 Hz tone (the approximate fundamental frequency to the male's advertisement call) was broadcast to gravid females that were released from alternative sites approximately 100 cm from the source. The phonotaxic responses of females to the source were recorded, analyzed and compared with the sound field. One release site was approximately along the vibratory axis of the dipole source, and the other was approximately orthogonal to the vibratory axis. The sound field in the tank was fully characterized through measurements of the sound pressure field using hydrophones and acoustic particle motion using an accelerometer. These measurements confirmed that the sound field was a nearly ideal dipole. When released along the dipole vibratory axis, the responding female fish took essentially straight paths to the source. However, when released approximately 90 deg to the source's vibratory axis, the responding females took highly curved paths to the source that were approximately in line with the local particle motion axes. These results indicate that the acoustic cues used by fish during sound-source localization include the axes of particle motion of the local sound field.
通过利用怀孕雌鱼对雄鱼求偶叫声的自然声趋性反应,研究了平鳍美洲蟾鱼(Porichthys notatus)的声源定位行为。观察在一个圆形的混凝土水池中进行,将一个偶极子声源放置在水池的中心,并用大约 80-90Hz 的音调(接近雄鱼求偶叫声的基频)向从大约 100 厘米远的不同位置释放的怀孕雌鱼播放。记录、分析并比较了雌鱼对声源的声趋性反应与声场。一个释放位置大约沿着偶极子声源的振动轴,另一个释放位置大约垂直于振动轴。通过使用水听器测量声场中的声压场和使用加速度计测量声粒子运动,全面描述了水池中的声场。这些测量结果证实了声场是一个几乎理想的偶极子。当沿着偶极子振动轴释放时,反应的雌鱼基本上沿着直线路径向声源移动。然而,当大约 90 度角释放到声源的振动轴时,反应的雌鱼采取了高度弯曲的路径向声源移动,这些路径大致与局部粒子运动轴一致。这些结果表明,鱼类在声源定位过程中使用的声线索包括局部声场的粒子运动轴。