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无尾蹄蝠的回声定位声波特征及分析 被引量:4

Characteristics and Analysis of Echolocation Calls by Coelops frithi
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摘要 采用超声波监听仪U30录制无尾蹄蝠自由飞行状态的回声定位声波,经Batsound3.0分析,其声波为高频(145.4±10.9kHz)、宽带(62.6±9.2kHz)、具两个谐波的短(1.67±0.4ms)FM型,不同于蹄蝠科其他蝙蝠的CF型,表明该科内物种声波类型存在多态性。头骨的形态测定分析支持其通过鼻腔发射声波,与蹄蝠科其他蝙蝠一致,表明该科内声波发射方式的单一性。适应环境的选择压力及翼型和声波的适应性可能是其选择FM型叫声的重要原因。 The echolocation calls of Coelopsfrithi were recorded during free flight using an ultrasonic detector U30, and were analyzed using the software Batsound 3.0. Our results showed that C. frithi emitted high frequency ( 145.4±10.9 kHz), broad bandwidth (62.6±9.2 kHz), and short (1.67±0.4 ms) frequency-modulated (FM) calls with 2 harmonics, which suggested polymorphic echolocation calls in Hipposideridae because other hipposiderid species emitted constant frequency (CF) calls. The analysis of the cranial measurements of C. frithi indicated that it was a nasal emitter like other hipposiderids, which suggested the single emitting form in this family. We considered that C. frithi emitted FM calls mainly due to the selection pressure of evolution and the adaptability between wing morphology and echolocation calls.
出处 《Zoological Research》 CAS CSCD 北大核心 2008年第1期95-98,共4页 动物学研究(英文)
基金 国家自然科学基金(30770361和30370261) 教育部新世纪优秀人才支持计划(NCET-04-0309) 博士点基金项目(20060200007)
关键词 翼手目 无尾蹄蝠 回声定位声波 FM型 Chiroptera Coelopsfrithi Echolocation calls FM
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参考文献18

  • 1Aldridge HDJN, Rautenbach IL. 1987. Morphology, echolocation and resource partitioning in insectivorous bats [J]. The Journal of Animal Ecology, 56 (3): 763-778.
  • 2Altringham JD. 1996. Bats Biology and Behaviour [M]. New York: Oxford University Press.
  • 3Borissenko AV, Kruskop SV. 2003. Bats of Vietnam and Adjacent Territories : An identification manual [M]. Moscow: Joint Russian-Vietnamese Science and Technological Tropical Centre, Zoological Museum of Moscow M. V. Lomonosov State University.
  • 4Eick GN, Jacobs DS, Matthee CA. 2005. A nuclear DNA phylogenetic perspective on the evolution of echolocation and historical biogeography of extant bats (Chiroplera) [J]. Molecular Biology and Evolution, 22(9): 1869-1886.
  • 5Freeman PW. 1984. Functional analysis of large animalivorous bats (Microchiroptera) [J]. Biological Journal of Linnean Society, 21: 387-408.
  • 6Jennings NV, Parsons S, Barlow KE, Gannon MR. 2004. Echolocation calls and wing morphology of bats from the West Indies [J]. Acta Chiropterologica, 6( 1): 75-90.
  • 7Jones G, Teeling EC. 2006. The evolution of echolocation in bats [J]. Trends in Ecology and Evolution, 21(3): 149-156.
  • 8Jones G, Webb PI, Sedgeley JA, O'Donnell CFJ. 2003. Mysterious Mystacina: How the New Zealand short-tailed bat (Mystacina tuberculata) locates insect prey [J]. The Journal of Experimental Biology, 206: 4209-4216.
  • 9Jones GS, Huang FL, Lin YE 1969. Distribution records of the Formosan tailless leaf-nosed bat, Coelops frithi formosanus [J]. Journal of Mammalogy, 50(2): 349-350.
  • 10Li G, Liang B, Wang YN, Zhao HB, Helgen KM, Lin LK, Jones G, Zhang SY. 2007. Echolocation calls, diet, and phylogenetic relationships of Stoliczka's trident bat, Aselliscus stoliczkanus (Hipposideridae) [J]. Journal of Mammalogy, 88: 736-744.

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