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红蝙蝠(北美棕蝠,蝙蝠科)的听觉与捕猎:听力图及耳部特性

Hearing and hunting in red bats (Lasiurus borealis, Vespertilionidae): audiogram and ear properties.

作者信息

Obrist M K, Wenstrup J J

机构信息

Swiss Federal Institute for Forest, Snow and Landscape Research, Birmensdorf, Switzerland.

出版信息

J Exp Biol. 1998 Jan;201(Pt 1):143-54. doi: 10.1242/jeb.201.1.143.

Abstract

We examined aspects of hearing in the red bat (Lasiurus borealis) related to its use of biosonar. Evoked potential audiograms, obtained from volume-conducted auditory brainstem responses, were obtained in two bats, and the sound pressure transformation of the pinna was measured in three specimens. Field-recorded echolocation signals were analysed for comparison. The fundamental sonar search calls sweep from 45 to 30 kHz (peak energy at 35 kHz), approach-phase calls sweep from 65 to 35 kHz (peak 40 kHz) and terminal calls sweep from 70 to 30 kHz (peak 45 kHz). The most sensitive region of the audiogram extended from 10 kHz to 45-55 kHz, with maximum sensitivity as low as 20 dB SPL occurring between 25 and 30 kHz. A relative threshold minimum occurred between 40 and 50 kHz. With increasing frequency, the acoustic axis of the pinna moves upwards and medially. The sound pressure transformation was noteworthy near 40-45 kHz; the acoustic axis was closest to the midline, the -3 dB acceptance angles showed local minima, and the pinna gain and interaural intensity difference were maximal. These results are related to the known echolocation and foraging behavior of this species and match the spectral components of approach- and final-phase calls. We conclude that co-evolution with hearing prey has put a higher selective pressure on optimizing localization and tracking of prey than on improving detection performance.

摘要

我们研究了红蝙蝠(北美棕蝠)与生物声纳使用相关的听觉方面。通过容积传导听觉脑干反应获得了两只蝙蝠的诱发电位听力图,并对三个标本的耳廓声压变换进行了测量。对野外记录的回声定位信号进行了分析以作比较。基本的声纳搜索叫声频率从45千赫扫至30千赫(峰值能量在35千赫),接近阶段叫声频率从65千赫扫至35千赫(峰值40千赫),终端叫声频率从70千赫扫至30千赫(峰值45千赫)。听力图最敏感的区域从10千赫延伸至45 - 55千赫,在25至30千赫之间出现低至20分贝声压级的最大灵敏度。在40至50千赫之间出现相对阈值最小值。随着频率增加,耳廓的声轴向上和向内移动。在40 - 45千赫附近,声压变换值得注意;声轴最接近中线,-3分贝接受角呈现局部最小值,耳廓增益和双耳强度差最大。这些结果与该物种已知的回声定位和觅食行为相关,并与接近阶段和最后阶段叫声的频谱成分相匹配。我们得出结论,与听觉猎物的共同进化对优化猎物定位和追踪施加了比提高探测性能更高的选择压力。

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