Transmitter and receiver of the low frequency horseshoe bat Rhinolophus paradoxolophus are functionally matched for fluttering target detection

Bruns V (1976) Peripheral auditory tuning for fine frequency analysis by the CF-FM bat, Rhinolophus ferrumequinum. II. Frequency mapping in the cochlea. J Comp Physiol 106:87–97

Article  Google Scholar 

Bruns V, Schmieszek E (1980) Cochlear innervation in the greater horseshoe bat: demonstration of an acoustic fovea. Hear Res 3:27–43

CAS  PubMed  Article  Google Scholar 

Denzinger A, Schnitzler H-U (2013) Bats guilds, a concept to classify the highly diverse foraging and echolocation behavior of microchiropteran bats. Front Physiol 4:164

PubMed  PubMed Central  Article  Google Scholar 

Denzinger A, Tschapka M, Schnitzler H-U (2018) The role of echolocation strategies for niche differentiation in bats. Can J Zool 96:171–181

Article  Google Scholar 

Eger JL, Fenton MB (2003) Rhinolophus Paradoxolophus Mamm. Species 731:1–4

Article  Google Scholar 

Fenton MB, Paul AF, Ratcliffe JM (2012) Evolution of high duty cycle echolocation in bats. J Exp Biol 215:2935–2944

PubMed  Article  Google Scholar 

Furusawa Y, Hiryu S, Kobayasi KI, Riquimaroux H (2012) Convergence of reference frequencies by multiple CF–FM bats (Rhinolophus ferrumequinum nippon) during paired flights evaluated with onboard microphones. J Comp Physiol A 198:683–693

Article  Google Scholar 

Gaioni SJ, Riquimaroux H, Suga N (1990) Biosonar behavior of mustached bats swung on a pendulum prior to cortical ablation. J Neurophysiol 64:1801–1817

CAS  PubMed  Article  Google Scholar 

Grinnell AD (1970) Comparative auditory neurophysiology of neotropical bats employing different echolocation signals. Z Vergl Physiol 68:117–153

Article  Google Scholar 

Grinnell AD, Hagiwara S (1972) Adaptations of the auditory nervous system for echolocation. Z Vergl Physiol 76:41–81

Article  Google Scholar 

Gustafson Y, Schnitzler H-U (1979) Echolocation and obstacle avoidance in the hipposiderid bat, Asellia tridens. J Comp Physiol A 131:161–167

Article  Google Scholar 

Habersetzer J, Schuller G, Neuweiler G (1984) Foraging behavior and Doppler shift compensation in echolocating hipposiderid bats, Hipposideros bicolor and Hipposideros speoris. J Comp Physiol 155:559–567

Article  Google Scholar 

Henson OW, Henson MM, Kobler JB, Pollak GD (1980) The constant frequency component of the biosonar signals of the bat, Pteronotus parnellii parnellii. In: Busnel RG, Fish JF (eds) Animal Sonar Systems. Springer, Boston, MA, pp 913–916

Chapter  Google Scholar 

Henson OW, Schuller G, Vater M (1985) A comparative study of the physiological properties of the inner ear in Doppler shift compensating bats (Rhinolophus rouxi and Pteronotus parnellii). J Comp Physiol A 157:587–597

PubMed  Article  Google Scholar 

Hiryu S, Shiori Y, Hosokawa T, Riquimaroux H, Watanabe Y (2008) On-board telemetry of emitted sounds from free-flying bats: compensation for velocity and distance stabilizes echo frequency and amplitude. J Comp Physiol A 194:841–851

Article  Google Scholar 

Huffman RF, Henson JrOW (1993) Labile cochlear tuning in the moustached bat. I. Concomitant shifts in biosonar emission frequency. J Comp Physiol A 171:725–734

CAS  PubMed  Article  Google Scholar 

Huihua Z, Shuyi Z, Mingxue Z, Jiang Z (2003) Correlations between call frequency and ear length in bats belonging to the families Rhinolophidae and Hipposideridae. J Zool 259:189–195

Article  Google Scholar 

Jen PHS, Suthers RA (1982) Responses of inferior collicular neurones to acoustic stimuli in certain FM and CF-FM paleotropical bats. J Comp Physiol 146:423–434

Article  Google Scholar 

Jones G, Ransome RD (1993) Echolocation calls of bats are influenced by maternal effects and change over a lifetime. Proc Royal Soc B 252:125–128

CAS  Article  Google Scholar 

Keating AW, JrOW H, Henson MM, Lancaster WC, Xie DH (1994) Doppler-shift compensation by the mustached bat: quantitative data. J Exp Biol 188:115–129

CAS  PubMed  Article  Google Scholar 

Kössl M (1994) Otoacoustic emissions from the cochlea of the ‘constant frequency’ bats, Pteronotus parnellii and Rhinolophus rouxi. Hear Res 72:59–72

PubMed  Article  Google Scholar 

Kössl M, Vater M (1985) The cochlear frequency map of the mustache bat, Pteronotus parnellii. J Comp Physiol A 157:687–697

PubMed  Article  Google Scholar 

Long GR, Schnitzler H-U (1975) Behavioural audiograms from the bat, Rhinolophus ferrumequinum. J Comp Physiol 100:211–219

Article  Google Scholar 

Metzner W (1989) A possible neuronal basis for doppler-shift compensation in echo-locating horseshoe bats. Nature 341:529–532

CAS  PubMed  Article  Google Scholar 

Neuweiler G (1970) Neurophysiologische Untersuchungen zum Echoortungssystem der Großen Hufeisennase Rhinolophus ferrum equinum Schreber, 1774. Z Vergl Physiol 67:273–306

Article  Google Scholar 

Neuweiler G (1990) Auditory adaptations for prey capture in echolocating bats. Physiol Rev 70:615–641

CAS  PubMed  Article  Google Scholar 

Neuweiler G, Schuller G, Schnitzler H-U (1971) On-and off-responses in the inferior colliculus of the greater horseshoe bat to pure tones. Z Vergl Physiol 74:57–63

Article  Google Scholar 

Neuweiler G, Bruns V, Schuller G (1980) Ears adapted for the detection of motion, or how echolocating bats have exploited the capacities of the mammalian auditory system. J Acoust Soc Am 68:741–753

Article  Google Scholar 

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

Article  Google Scholar 

Ostwald J (1984) Tonotopical organization and pure tone response characteristics of single units in the auditory cortex of the greater horseshoe bat. J Comp Physiol A 155:821–834

Article  Google Scholar 

Pollak GD, Bodenhammer RD (1981) Specialized characteristics of single units in inferior colliculus of mustached bat: frequency representation, tuning, and discharge patterns. J Neurophysiol 46:605–620

CAS  PubMed  Article  Google Scholar 

Pollak G, Henson OW, Novick A (1972) Cochlear microphonic audiograms in the" pure tone" bat Chilonycteris parnellii parnellii. Science 176:66–68

CAS  PubMed  Article  Google Scholar 

Rübsamen R, Neuweiler G, Sripathi K (1988) Comparative collicular tonopy in two bat species adapted to movement detection, Hipposideros speoris and Megaderma lyra. J Comp Physiol 163:271–285

Article  Google Scholar 

Schnitzler H-U (1968) Die Ultraschall-Ortungslaute der Hufeisen-Fledermäuse (Chiroptera-Rhinolophidae) in verschiedenen Ortungssituationen. Z Vergl Physiol 57:376–408

Article  Google Scholar 

Schnitzler H-U (1970) Die Echoortung bei der Fledermaus Chilonycteris rubiginosa. Z Vergl Physiol 68:25–38

Article  Google Scholar 

Schnitzler H-U (1973) Control of Doppler shift compensation in the Greater Horseshoe bat, Rhinolophus ferrumequinum. J Comp Physiol 82:79–92

Article  Google Scholar 

Schnitzler H-U (1978) Die Detektion von Bewegungen durch Echoortung bei Fledermäusen. Verh Dtsch Zool Ges 71:16–33

Google Scholar 

Schnitzler H-U, Denzinger A (2011) Auditory fovea and Doppler shift compensation: adaptations for flutter detection in echolocating bats using CF-FM signals. J Comp Physiol A 197:541–559

Article  Google Scholar 

Schnitzler H-U, Henson JrOW (1980) Performance of airborne animal sonar systems: I. Microchiroptera. In: Busnel RG, Fish JF (eds) Animal Sonar Systems. Springer, Boston, MA, pp 109–181

Chapter  Google Scholar 

Schnitzler H-U, Kalko EKV (1998) How echolocating bats search and find food. In: Kunz TH, Racey PA (eds) Bat biology and conservation. Smithsonian Institution Press, Washington and London, pp 183–196

Google Scholar 

Schnitzler H-U, Kalko EKV (2001) Echolocation by insect-eating bats. Bioscience 51:557–569

Article  Google Scholar 

Schnitzler H-U, Ostwald J (1983) Adaptations for the detection of fluttering insects by echolocation in horseshoe bats. In: Ewert JP, Capranica RR, Ingle DJ (eds) Advances in vertebrate neuroethology. Plenum Press, New York, pp 801–827

Chapter  Google Scholar 

Schnitzler H-U, Neuweiler G, Schuller G (1971) Antworten des Colliculus inferior der Fledermaus Rhinolophus euryale auf tonale Reizung. Naturwissenschaften 12:627–627

Article  Google Scholar 

Schnitzler H-U, Suga N, Simmons JA (1976) Peripheral auditory tuning for fine frequency analysis by the CF-FM bat, Rhinolophus ferrumequinum. J Comp Physiol 106:99–110

Article  Google Scholar 

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

Chapter  Google Scholar 

Schnitzler H-U, Moss CF, Denzinger A (2003) From spatial orientation to food acquisition in echolocating bats. Trends Ecol Evol 18:386–394

Article  Google Scholar 

Schoeppler D, Schnitzler H-U, Denzinger A (2018) Precise Doppler shift compensation in the hipposiderid bat, Hipposideros armiger. Sci Rep 8:1–11

CAS  Article  Google Scholar 

Schoeppler D, Denzinger A, Schnitzler H-U (2022) The frequency of echolocation signals changes with body temperature in the hipposiderid bat Hipposideros armiger. J Exp Biol. https://doi.org/10.1242/jeb.243569

Article  PubMed  PubMed Central  Google Scholar 

Schuller G (1980) Hearing characteristics and Doppler shift compensation in South Indian CF-FM bats. J Comp Physiol A 4:349–356

Article  Google Scholar 

Schuller G, Pollak G (1979) Disproportionate frequency representation in the inferior colliculus of Doppler-compensating Greater Horseshoe bats – Evidence for an Acoustic Fovea. J Comp Physiol 132:47–54

Article  Google Scholar 

Schuller G, Beuter K, Schnitzler H-U (1974) Response to frequency shifted artificial echoes in bat Rhinolophus ferrumequinum. J Comp Physiol 89:275–286

Article  Google Scholar 

Schuller G, Beuter K, Rübsamen R (1975) Dynamic properties of the compensation system for Doppler shifts in the bat, Rhinolophus ferrumequinum. J Comp Physiol 97:113–125

Article 

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