首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Perception of silent and motionless prey on vegetation by echolocation in the gleaning bat Micronycteris microtis
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Perception of silent and motionless prey on vegetation by echolocation in the gleaning bat Micronycteris microtis

机译:回声定位在拾音蝙蝠Micronycteris microtis中对植被的静止和静止的猎物的感知

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摘要

Gleaning insectivorous bats that forage by using echolocation within dense forest vegetation face the sensorial challenge of acoustic masking effects. Active perception of silent and motionless prey in acoustically cluttered environments by echolocation alone has thus been regarded impossible. The gleaning insectivorous bat Micronycteris microtis however, forages in dense understory vegetation and preys on insects, including dragonflies, which rest silent and motionless on vegetation. From behavioural experiments, we show that M. microtis uses echolocation as the sole sensorial modality for successful prey perception within a complex acoustic environment. All individuals performed a stereotypical three-dimensional hovering flight in front of prey items, while continuously emitting short, multi-harmonic, broadband echolocation calls. We observed a high precision in target localization which suggests that M. microtis perceives a detailed acoustic image of the prey based on shape, surface structure and material. Our experiments provide, to our knowledge, the first evidence that a gleaning bat uses echolocation alone for successful detection, classification and precise localization of silent and motionless prey in acoustic clutter. Overall, we conclude that the three-dimensional hovering flight of M. microtis in combination with a frequent emission of short, high-frequency echolocation calls is the key for active prey perception in acoustically highly cluttered environments.
机译:在森林茂密的植被中利用回声定位来觅食的食虫蝙蝠面临着声掩蔽效应的感官挑战。因此,仅靠回声定位就无法主动感知在声音混乱的环境中对沉默和静止的猎物的感知。然而,拾食性的食虫蝙蝠Micronycteris microtis会在茂密的林下植被中觅食,并捕食昆虫,包括蜻蜓,它们静静地静止在植被上。从行为实验,我们表明,M。microtis使用回声定位作为在复杂的声学环境中成功捕获猎物的唯一感觉方式。所有个体都在猎物前进行了定型的三维盘旋飞行,同时不断发出短,多谐波,宽带回声定位呼叫。我们观察到了目标定位的高精度,这表明Microtis Microtis会根据形状,表面结构和材料感知猎物的详细声像。就我们所知,我们的实验提供了第一个证据,即拾音蝙蝠仅将回声定位用于成功地检测,分类和精确定位声杂波中无声和静止的猎物。总体而言,我们得出结论,在声音高度混乱的环境中,密克罗迪斯虫的三维盘旋飞行与频繁发出短而高频的回声定位呼叫是主动捕获猎物的关键。

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