90
Braun CB, Grande T (2008) Evolution of peripheral mechanisms for the enhancement of sound
reception. In: Webb JF, Fay RR, Popper AN (eds) Fish bioacoustics. Springer, New York,
pp 100–144
Braun CB, Coombs S, Fay RR (2002) What is the nature of multisensory interaction between
octavolateralis sub-systems? Brain Behav Evol 59:162–176
Cato DH (1978) Marine biological choruses observed in tropical waters near Australia. J Acoust
Soc Am 64:736–743
Cato DH, McCauley RD (2002) Australian research in ambient sea noise. Acoust Aust 30:13–20
Coffi n AB, Zeddies DG, Fay RR, Brown AD, Alderks PW, Bhandiwad AA, Mohr RA, Gray MD,
Rogers PH, Sisneros JA (2014) Use of the swim bladder and lateral line in near-fi eld sound
source localization by fi sh. J Exp Biol 217:2078–2088
Cole AJ, Pratchett MS (2014) Diversity in diet and feeding behaviour of butterfl yfi shes: reliance
on reef corals versus reef habitats. In: Pratchett MS, Berumen ML, Kapoor BG (eds) Biology
of butterfl yfi shes. CRC, Boca Raton, pp 107–139
Coombs S, Montgomery, JC (1999) The enigmatic lateral line system. In: Fay RR, Popper AN
(eds) Comparative hearing: fi sh and amphibians. Springer, New York, pp 319–362
Coombs S, Popper AN (1979) Hearing differences among Hawaiian squirrelfi shes (family
Holocentridae) related to differences in the peripheral auditory system. J Comp Physiol A
132:203–207
Coombs S, Hasting M, Finneran J (1996) Modeling and measuring lateral line excitation patterns
to changing dipole source locations. J Comp Physiol A 178:359–371
Dewan AK, Tricas TC (2011) Arginine vasotocin neuronal phenotypes and their relationship to
aggressive behavior in the territorial monogamous multiband butterfl yfi sh, Chaetodon multicinctus . Brain Res 1401:74–84
Dewan AK, Tricas TC (2014) Cytoarchitecture of the telencephalon in the coral reef multiband
butterfl yfi sh ( Chaetodon multicinctus : Perciformes). Brain Behav Evol 84:31–35
Dewan AK, Maruska KP, Tricas TC (2008) Arginine vasotocin neuronal phenotypes among congeneric territorial and shoaling reef butterfl yfi shes: species, sex and reproductive season comparisons. J Neuroendocrinol 20:1382–1394
Dewan AD, Ramey ML, Tricas TC (2011) Arginine vasotocin neuronal phenotypes, telencephalic
fi ber varicosities, and social behavior in butterfl yfi shes (Chaetodontidae): potential similarities
to birds and mammals. Horm Behav 59:56–66
Fessler JL, Westneat MW (2007) Molecular phylogenetics of the butterfl yfi shes (Chaetodontidae):
taxonomy and biogeography of a global coral reef fi sh family. Mol Phylogenet Evol 45:50–68
Fish MP, Mowbray WH (1970) Sounds of western north Atlantic fi shes. Baltimore, Johns Hopkins
Univ. Press.
Fitch WT, Hauser MD (2002) Unpacking ‘honesty’: vertebrate vocal production and the evolution
of acoustic signals. In: Simmons AM, Fay RR, Popper AN (eds) Acoustic communication.
Springer, New York, pp 65–137
Fletcher LB, Crawford JD (2001) Acoustic detection by sound producing fi shes (Mormyridae): the
role of gas-fi lled tympanic bladders. J Exp Biol 204:175–183
Fricke HW (1986) Pair swimming and mutual partner guarding in monogamous butterfl yfi sh
(Pisces, Chaetodontidae): a joint advertisement of territory. Ethology 73:307–333
Hamilton WJ III, Peterman RJ (1971) Countershading in the colourful reef fi sh Chaetodon lunula :
concealment, communication, or both? Anim Behav 19:357–364
Hanke W, Boyle K, Tricas TC (2008) Flow measurements during the multimodal communication in
Hawaiian butterfl yfi sh. In: Ruck B, Leder A, Dophedide D (eds) Lasermethoden in der
Strömungsmesstechnik). German Association for Laser Anemometry, Karlsruhe, pp 53.1–53.6
Hawkins AD (1993) Underwater sound and fi sh behavior. In: Pitcher TJ (ed) Behaviour of teleost
fi shes. Chapman Hall, London, pp 129–160
Higgs DM, Radford CA (2013) The contribution of the lateral line to ‘hearing’ in fi sh. J Exp Biol
216:1484–1490
Hourigan TF (1989) Environmental determinants of butterfl yfi sh social systems. Environ Biol
Fishes 25:61–78
T.C. Tricas and J.F. Webb
Braun CB, Grande T (2008) Evolution of peripheral mechanisms for the enhancement of sound
reception. In: Webb JF, Fay RR, Popper AN (eds) Fish bioacoustics. Springer, New York,
pp 100–144
Braun CB, Coombs S, Fay RR (2002) What is the nature of multisensory interaction between
octavolateralis sub-systems? Brain Behav Evol 59:162–176
Cato DH (1978) Marine biological choruses observed in tropical waters near Australia. J Acoust
Soc Am 64:736–743
Cato DH, McCauley RD (2002) Australian research in ambient sea noise. Acoust Aust 30:13–20
Coffi n AB, Zeddies DG, Fay RR, Brown AD, Alderks PW, Bhandiwad AA, Mohr RA, Gray MD,
Rogers PH, Sisneros JA (2014) Use of the swim bladder and lateral line in near-fi eld sound
source localization by fi sh. J Exp Biol 217:2078–2088
Cole AJ, Pratchett MS (2014) Diversity in diet and feeding behaviour of butterfl yfi shes: reliance
on reef corals versus reef habitats. In: Pratchett MS, Berumen ML, Kapoor BG (eds) Biology
of butterfl yfi shes. CRC, Boca Raton, pp 107–139
Coombs S, Montgomery, JC (1999) The enigmatic lateral line system. In: Fay RR, Popper AN
(eds) Comparative hearing: fi sh and amphibians. Springer, New York, pp 319–362
Coombs S, Popper AN (1979) Hearing differences among Hawaiian squirrelfi shes (family
Holocentridae) related to differences in the peripheral auditory system. J Comp Physiol A
132:203–207
Coombs S, Hasting M, Finneran J (1996) Modeling and measuring lateral line excitation patterns
to changing dipole source locations. J Comp Physiol A 178:359–371
Dewan AK, Tricas TC (2011) Arginine vasotocin neuronal phenotypes and their relationship to
aggressive behavior in the territorial monogamous multiband butterfl yfi sh, Chaetodon multicinctus . Brain Res 1401:74–84
Dewan AK, Tricas TC (2014) Cytoarchitecture of the telencephalon in the coral reef multiband
butterfl yfi sh ( Chaetodon multicinctus : Perciformes). Brain Behav Evol 84:31–35
Dewan AK, Maruska KP, Tricas TC (2008) Arginine vasotocin neuronal phenotypes among congeneric territorial and shoaling reef butterfl yfi shes: species, sex and reproductive season comparisons. J Neuroendocrinol 20:1382–1394
Dewan AD, Ramey ML, Tricas TC (2011) Arginine vasotocin neuronal phenotypes, telencephalic
fi ber varicosities, and social behavior in butterfl yfi shes (Chaetodontidae): potential similarities
to birds and mammals. Horm Behav 59:56–66
Fessler JL, Westneat MW (2007) Molecular phylogenetics of the butterfl yfi shes (Chaetodontidae):
taxonomy and biogeography of a global coral reef fi sh family. Mol Phylogenet Evol 45:50–68
Fish MP, Mowbray WH (1970) Sounds of western north Atlantic fi shes. Baltimore, Johns Hopkins
Univ. Press.
Fitch WT, Hauser MD (2002) Unpacking ‘honesty’: vertebrate vocal production and the evolution
of acoustic signals. In: Simmons AM, Fay RR, Popper AN (eds) Acoustic communication.
Springer, New York, pp 65–137
Fletcher LB, Crawford JD (2001) Acoustic detection by sound producing fi shes (Mormyridae): the
role of gas-fi lled tympanic bladders. J Exp Biol 204:175–183
Fricke HW (1986) Pair swimming and mutual partner guarding in monogamous butterfl yfi sh
(Pisces, Chaetodontidae): a joint advertisement of territory. Ethology 73:307–333
Hamilton WJ III, Peterman RJ (1971) Countershading in the colourful reef fi sh Chaetodon lunula :
concealment, communication, or both? Anim Behav 19:357–364
Hanke W, Boyle K, Tricas TC (2008) Flow measurements during the multimodal communication in
Hawaiian butterfl yfi sh. In: Ruck B, Leder A, Dophedide D (eds) Lasermethoden in der
Strömungsmesstechnik). German Association for Laser Anemometry, Karlsruhe, pp 53.1–53.6
Hawkins AD (1993) Underwater sound and fi sh behavior. In: Pitcher TJ (ed) Behaviour of teleost
fi shes. Chapman Hall, London, pp 129–160
Higgs DM, Radford CA (2013) The contribution of the lateral line to ‘hearing’ in fi sh. J Exp Biol
216:1484–1490
Hourigan TF (1989) Environmental determinants of butterfl yfi sh social systems. Environ Biol
Fishes 25:61–78
T.C. Tricas and J.F. Webb
