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杂乱环境与同种个体:对道氏鼠耳蝠(Myotis daubentonii)回声定位和飞行行为影响的比较

Clutter and conspecifics: a comparison of their influence on echolocation and flight behaviour in Daubenton's bat, Myotis daubentonii.

作者信息

Fawcett Kayleigh, Ratcliffe John M

机构信息

Department of Biology, University of Southern Denmark, 5230, Odense M, Denmark.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2015 Mar;201(3):295-304. doi: 10.1007/s00359-014-0977-0. Epub 2015 Jan 1.

Abstract

We compared the influence of conspecifics and clutter on echolocation and flight speed in the bat Myotis daubentonii. In a large room, actual pairs of bats exhibited greater disparity in peak frequency (PF), minimum frequency (F MIN) and call period compared to virtual pairs of bats, each flying alone. Greater inter-individual disparity in PF and F MIN may reduce acoustic interference and/or increase signal self-recognition in the presence of conspecifics. Bats flying alone in a smaller flight room, to simulate a more cluttered habitat as compared to the large flight room, produced calls of shorter duration and call period, lower intensity, and flew at lower speeds. In cluttered space, shorter call duration should reduce masking, while shorter call period equals more updates to the bat's auditory scene. Lower intensity likely reflects reduced range detection requirements, reduced speed the demands of flying in clutter. Our results show that some changes (e.g. PF separation) are associated with conspecifics, others with closed habitat (e.g. reduced call intensity). However, we demonstrate that call duration, period, and flight speed appear similarly influenced by conspecifics and clutter. We suggest that some changes reduce conspecific interference and/or improve self-recognition, while others demonstrate that bats experience each other like clutter.

摘要

我们比较了同种个体和障碍物对达氏鼠耳蝠回声定位及飞行速度的影响。在一个大房间里,与单独飞行的虚拟蝙蝠对相比,实际的蝙蝠对在峰值频率(PF)、最低频率(F MIN)和叫声周期方面表现出更大的差异。在有同种个体存在的情况下,PF和F MIN中更大的个体间差异可能会减少声学干扰和/或增强信号自我识别。在一个较小的飞行房间里单独飞行的蝙蝠,与大飞行房间相比,模拟了一个更杂乱的栖息地,它们发出的叫声持续时间和叫声周期更短,强度更低,飞行速度也更低。在杂乱的空间中,较短的叫声持续时间应能减少掩蔽,而较短的叫声周期则等同于对蝙蝠听觉场景的更多更新。较低的强度可能反映出探测范围需求的降低,以及在杂乱环境中飞行对速度要求的降低。我们的结果表明,一些变化(如PF分离)与同种个体有关,其他变化(如叫声强度降低)与封闭栖息地有关。然而,我们证明叫声持续时间、周期和飞行速度似乎受到同种个体和障碍物的类似影响。我们认为,一些变化减少了同种干扰和/或改善了自我识别,而其他变化则表明蝙蝠将彼此视为障碍物。

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