首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >Vibration transmission through sheet webs of hobo spiders (Eratigena agrestis) and tangle webs of western black widow spiders (Latrodectus hesperus)
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Vibration transmission through sheet webs of hobo spiders (Eratigena agrestis) and tangle webs of western black widow spiders (Latrodectus hesperus)

机译:通过流浪蜘蛛(Eratigena agrestis)的薄片网和西部黑寡妇蜘蛛(Latrodectus hesperus)的缠结网传递振动

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Web-building spiders construct their own vibratory signaling environments. Web architecture should affect signal design, and vice versa, such that vibratory signals are transmitted with a minimum of attenuation and degradation. However, the web is the medium through which a spider senses both vibratory signals from courting males and cues produced by captured prey. Moreover, webs function not only in vibration transmission, but also in defense from predators and the elements. These multiple functions may impose conflicting selection pressures on web design. We investigated vibration transmission efficiency and accuracy through two web types with contrasting architectures: sheet webs of Eratigena agrestis (Agelenidae) and tangle webs of Latrodectus hesperus (Theridiidae). We measured vibration transmission efficiencies by playing frequency sweeps through webs with a piezoelectric vibrator and a loudspeaker, recording the resulting web vibrations at several locations on each web using a laser Doppler vibrometer. Transmission efficiencies through both web types were highly variable, with within-web variation greater than among-web variation. There was little difference in transmission efficiencies of longitudinal and transverse vibrations. The inconsistent transmission of specific frequencies through webs suggests that parameters other than frequency are most important in allowing these spiders to distinguish between vibrations of prey and courting males.
机译:网络构建蜘蛛会构建自己的振动信号环境。 Web架构应影响信号设计,反之亦然,以使振动信号的衰减和降级最小。然而,网是蜘蛛通过其感测来自求爱雄性的振动信号和由捕获的猎物产生的暗示的媒介。此外,腹板不仅起到振动传递的作用,而且还具有抵御天敌和各种元素的作用。这些多种功能可能会对网页设计施加冲突的选择压力。我们通过两种具有对比结构的纤维网类型研究了振动传递效率和精度:Eratigena agrestis(Agelenidae)的片状纤维网和hetroperus hesperus(Theridiidae)的缠结纤维网。我们通过使用压电振动器和扬声器播放纤维网的频率扫描,并使用激光多普勒振动计记录每个纤维网在多个位置的振动结果,从而测量振动传递效率。两种网类型的传输效率变化很大,网内变化大于网间变化。纵向和横向振动的传递效率几乎没有差异。通过网的特定频率的不一致传输表明,除了频率以外,其他参数对于让这些蜘蛛区分猎物的振动和求偶的振动是最重要的。

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