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首页> 外文期刊>The Quarterly Review of Biology >Snake Bioacoustics: Toward a Richer Understanding of the Behavioral Ecology of Snakes
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Snake Bioacoustics: Toward a Richer Understanding of the Behavioral Ecology of Snakes

机译:蛇生物声学:对蛇的行为生态学有更深入的了解

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ABSTRACT Snakes are frequently described in both popular and technical literature as either deaf or able to perceive only groundborne vibrations. Physiological studies have shown that snakes are actually most sensitive to airborne vibrations. Snakes are able to detect both airborne and groundborne vibrations using their body surface (termed somatic hearing) as well as from their inner ears. The central auditory pathways for these two modes of “hearing” remain unknown. Recent experimental evidence has shown that snakes can respond behaviorally to both airborne and groundborne vibrations. The ability of snakes to contextualize the sounds and respond with consistent predatory or defensive behaviors suggests that auditory stimuli may play a larger role in the behavioral ecology of snakes than was previously realized. Snakes produce sounds in a variety of ways, and there appear to be multiple acoustic Batesian mimicry complexes among snakes. Analyses of the proclivity for sound production and the acoustics of the sounds produced within a habitat or phylogeny specific context may provide insights into the behavioral ecology of snakes. The relatively low information content in the sounds produced by snakes suggests that these sounds are not suitable for intraspecific communication. Nevertheless, given the diversity of habitats in which snakes are found, and their dual auditory pathways, some form of intraspecific acoustic communication may exist in some species.
机译:摘要蛇在流行和技术文献中经常被描述为聋或仅能感知地面传播的振动。生理研究表明,蛇实际上对空气传播的振动最敏感。蛇能够通过其体表(称为躯体听觉)以及从其内耳来检测空中和地面振动。这两种“听觉”模式的中央听觉途径仍然未知。最近的实验证据表明,蛇可以对空中和地面振动做出反应。蛇将声音关联到上下文中并以一致的掠食性或防御性行为做出响应的能力表明,听觉刺激在蛇的行为生态学中的作用可能比以前意识到的要大。蛇以多种方式发出声音,并且蛇之间似乎存在多个贝兹式的拟声复合体。对声音产生的倾向性以及在栖息地或系统发育特定背景下产生的声音的声学特性的分析可能会提供有关蛇的行为生态学的见识。蛇产生的声音中相对较低的信息含量表明这些声音不适合种内交流。然而,考虑到发现蛇的栖息地的多样性及其双听觉通路,某些物种中可能存在某种形式的种内声通信。

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