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Echolocation in the notch-eared bat, Myotis emarginatus

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Summary

In Myotis emarginatus, the patterns of echolocation sounds vary with different foraging habitats: In commuting flights the echolocation sounds are linearly frequency modulated sweeps that start at about 100 kHz, terminate at 40 kHz, and have a duration of 1–3 ms. They consist of a loud first harmonic. The second and third harmonics are at least 15 dB fainter than the first one and often undetectable. A distinctly different type of sound is emitted when the bats search for flying insects in open spaces. The sounds are reduced in bandwidth and elongated by a constant frequency component that follows the initial frequency modulated part. Typically, sounds start at about 94 kHz and terminate in a constant frequency component at about 40–45 kHz. The average duration of the constant frequency tail is 2.8 ms; this approximately doubles the length of the pulse, with the longest recorded sound lasting 7.2 ms. When bats are foraging near and within foliage, and gleaning prey from foliage, echolocation sounds are brief (average 1 ms) frequency modulated pulses with a broad bandwidth. The pulses start at about 105 kHz and sweep down to 25 kHz. During gleaning within a building, the frequency range of the sounds is shifted to higher frequencies and extends from 124 to 52 kHz. When the bats forage for aireal insects in a confined area that creates echo-clutter, they emit sounds similar to those used during gleaning within buildings except that sound durations are extended to about 1.8 ms. In each foraging area, the echolocation sounds emitted during the search for and approach to prey are similar in structure. Sound and pause durations are reduced in the approach phase. Irrespective of foraging style and habitat, immediately before capture the bat emits a rapid and stereotyped sequence of 2-10 echolocation pulses (final buzz). These pulses are brief (0.2–0.5 ms), frequency modulated sounds with a reduced bandwidth. The sounds start at 45 kHz and sweep down to 35–20 kHz. The repetition rate is increased up to 200 pulses/s.

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References

  • Beuter K (1980) A new concept of echo evaluation in the auditory system of bats. In: Busnel RG, Fish JF (eds) Animal sonar systems. Plenum Press, New York, pp 747–761

    Google Scholar 

  • Griffin DR (1958) Listening in the dark. Yale University Press, New Haven

    Google Scholar 

  • Griffin DR (1962) Echoortung der Fledermäuse, insbesondere beim Fang fliegender Insekten. Naturwiss Rundsch 15:169–173

    Google Scholar 

  • Griffin DR, Webster FA, Michael CR (1960) The echolocation of flying insects by bats. Anim Behav 8:141–154

    Google Scholar 

  • Habersetzer J, Vogler B (1983) Discrimination of surface-structured targets by the echolocating bat Myotis myotis during flight. J Comp Physiol [A] 152:275–282

    Google Scholar 

  • Jen PHH-S, Suthers RA (1982) Responses of inferior collicular neurons to acoustic stimuli in certain FM and CF-FM paleotropical bats. J Comp Physiol [A] 146:423–434

    Google Scholar 

  • Kalko EKV, Schnitzler HU (1989) The echolocation and hunting behaviour of Daubenton's bat, Myotis daubentoni. Behav Ecol Sociobiol 24:225–238

    Google Scholar 

  • Köhler W, Schachtel G, Voleske P (1984) Biometrie. Springer, Berlin Heidelberg New York

    Google Scholar 

  • Konstantinov AI (1969) The relationship of auditory perception and echolocation during detection and catching of insects by bats (Vespertilionidae). J Evol Biochem Physiol 5:566–572

    Google Scholar 

  • Krull D, Schumm A, Metzner W, Neuweiler G (1991) Observation at a maternity colony of the notch-eared bat, Myotis emarginatus, with special reference to foraging behaviour. Behav Ecol Sociobiol 28:247–253

    Google Scholar 

  • Link A, Marimuthu G, Neuweiler G (1986) Movement as a specific stimulus for prey catching behaviour in rhinolophid and hipposiderid bats. J Comp Physiol [A] 159:403–413

    Google Scholar 

  • Neuweiler G (1984) Foraging, echolocation and audition in bats. Naturwissenschaften 71:446–455

    Google Scholar 

  • Neuweiler G (1989) Foraging ecology and audition in echolocating bats. Trends Ecol Evol 4:160–166

    Google Scholar 

  • Neuweiler G, Singh S, Sripathi K (1984) Audiograms of a South Indian bat community. J Comp Physiol [A] 154:133–142

    Google Scholar 

  • Neuweiler G, Metzner W, Heilmann U, Rübsamen R, Eckrich M, Costa HH (1987) Foraging behaviour and echolocation in the rufous horseshoe bat of Sri Lanka. Behav Ecol Sociobiol 20:53–67

    Google Scholar 

  • Norberg UM, Fenton MB (1988) Carnivorous bats? Biol J Linn Soc 33:383–394

    Google Scholar 

  • Pye JD (1967) Synthesizing the waveforms of bats pulses. In: Busnel RG (ed) Animal sonar systems. Laboratoire Physiol Acoust CNRS, Jouy-en-Josas France, pp 43–65

    Google Scholar 

  • Pye JD (1980a) Adaptiveness of echolocation signals in bats. Trends Neurosci 3:232–235

    Google Scholar 

  • Pye JD (1980b) Echolocation signals and echoes in air. In: Busnel RG, Fish JF (eds) Animal sonar systems. Plenum Press, New York, pp 309–333

    Google Scholar 

  • Schmidt S (1988) Evidence for a spectral basis of texture perception in bat sonar. Nature 331:617–619

    Google Scholar 

  • Schnitzler HU, Menne D, Kober R, Heblich K (1983) The acoustical image of fluttering insects in echolocating bats. In: Huber F, Markl H (eds) Neuroethology and behavioural physiology. Springer, Berlin Heidelberg New York, pp 235–250

    Google Scholar 

  • Schnitzler HU, Kalko E, Miller L, Surlykke A (1987) The echolocation and hunting behaviour of the bat, Pipistrellus kuhh. J Comp Physiol [A] 161:267–274

    Google Scholar 

  • Simmons JA, Lavender WA, Lavender BA et al. (1974) Target structure and echo spectral discrimination by echolocating bats. Science 186:1130–1132

    Google Scholar 

  • Vogler B, Neuweiler G (1983) Echolocation in noctule and horseshoe bats. J Comp Physiol [A] 152:421–432

    Google Scholar 

  • Zbinden K, Zingg PE (1986) Search and hunting signals of echolocating European free-tailed bats, Tadarida teniotis, in southern Switzerland. Mammalia 50:9–25

    Google Scholar 

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Schumm, A., Krull, D. & Neuweiler, G. Echolocation in the notch-eared bat, Myotis emarginatus . Behav Ecol Sociobiol 28, 255–261 (1991). https://doi.org/10.1007/BF00175098

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