Institute of Biology, University of Southern Denmark, Campusvej 55, 5230 Odense M, Denmark.
J Acoust Soc Am. 2011 Jan;129(1):427-35. doi: 10.1121/1.3519396.
The directionality of bat echolocation calls defines the width of bats' sonar "view," while call intensity directly influences detection range since adequate sound energy must impinge upon objects to return audible echoes. Both are thus crucial parameters for understanding biosonar signal design. Phyllostomid bats have been classified as low intensity or "whispering bats," but recent data indicate that this designation may be inaccurate. Echolocation beam directionality in phyllostomids has only been measured through electrode brain-stimulation of restrained bats, presumably excluding active beam control via the noseleaf. Here, a 12-microphone array was used to measure echolocation call intensity and beam directionality in the frugivorous phyllostomid, Carollia perspicillata, echolocating in flight. The results showed a considerably narrower beam shape (half-amplitude beam angles of approximately 16° horizontally and 14° vertically) and louder echolocation calls [source levels averaging 99 dB sound pressure level (SPL) root mean square] for C. perspicillata than was found for this species when stationary. This suggests that naturally behaving phyllostomids shape their sound beam to achieve a longer and narrower sonar range than previously thought. C. perspicillata orient and forage in the forest interior and the narrow beam might be adaptive in clutter, by reducing the number and intensity of off-axis echoes.
蝙蝠回声定位叫声的方向性决定了其声纳“视野”的宽度,而叫声强度则直接影响探测范围,因为必须有足够的声能作用于物体才能返回可听见的回声。因此,这两个因素都是理解生物声纳信号设计的关键参数。吸血蝙蝠被归类为低强度或“窃窃私语蝙蝠”,但最近的数据表明,这种说法可能并不准确。在 Phyllostomidae 蝙蝠中,回声定位束的方向性仅通过对受约束蝙蝠的电极脑刺激来测量,推测排除了通过鼻甲进行的主动波束控制。在这里,使用 12 个麦克风阵列来测量飞行中的食果 Phyllostomid 蝙蝠 Carollia perspicillata 的回声定位叫声强度和波束方向性。结果表明,与蝙蝠静止时相比,Carollia perspicillata 的波束形状要窄得多(水平半幅度波束角约为 16°,垂直半幅度波束角约为 14°),回声定位叫声也更大声[平均源级为 99 分贝声压级(SPL)均方根]。这表明,自然行为的 Phyllostomidae 蝙蝠会调整其声束形状,以实现比以前认为的更长、更窄的声纳范围。Carollia perspicillata 在森林内部定向和觅食,而窄波束可能在杂波中具有适应性,减少了离轴回声的数量和强度。