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Flight and echolocation behaviour of three vespertilionid bat species while commuting on flyways

机译:在飞行途中通勤时三种蝙蝠科蝙蝠的飞行和回声定位行为

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This study compares the flight and echolocation behaviour of three vespertilionid bat species while they commute on flyways. We measured the bats’ spatial position relative to vertical background contours and relative to the ground while recording their echolocation behaviour. In Myotis daubentonii, we found a significant influence of spatial context on the position and dimensions of flyways as well as on echolocation behaviour. In gap situations, flyways tended to be narrower and located closer to background structures, flight speeds were lower and the bandwidth of echolocation signals was larger than in edge situations. Differences in background structure did not affect flight and echolocation behaviour. When commuting in the same gap situation flyway positions and dimensions for M. daubentonii and Myotis brandtii were similar but differed from those of Pipistrellus pipistrellus, which were slightly higher and further out than those used by the Myotis species. In M. brandtii, flyway positions and dimensions remained constant over 3 years. We found species-dependent differences in signal structure, but pulse interval and flight speed were similar across all species. The influence of available space on the position of flyways, on flight speed and on echolocation behaviour is discussed.
机译:这项研究比较了三种vespertilionid蝙蝠在飞行途中的飞行和回声定位行为。在记录蝙蝠的回声定位行为时,我们测量了它们相对于垂直背景轮廓和相对于地面的空间位置。在鼠尾草(Myotis daubentonii)中,我们发现了空间背景对飞行通道的位置和尺寸以及回声定位行为的重大影响。在间隙情况下,与在边缘情况下相比,飞行路线趋于更窄并且更靠近背景结构,飞行速度更低,回声定位信号的带宽更大。背景结构的差异不会影响飞行和回声定位行为。当在相同的间隙情况下通勤时,道本氏梭菌和白花鼠耳蝠的飞行路线位置和大小相似,但不同于小鸟蝠Pi的飞行器位置和大小,它们比Myotis物种所使用的稍高和更远。在布兰迪葡萄中,飞道的位置和尺寸在3年中保持不变。我们发现了信号结构中依赖于物种的差异,但所有物种的脉冲间隔和飞行速度均相似。讨论了可用空间对飞行位置,飞行速度和回声定位行为的影响。

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