385
Bleckmann H, Niemann U, Fritzsch B (1991) Peripheral and central aspects of the acoustic and
lateral line system of a bottom dwelling catfi sh, Ancistrus sp. J Comp Neurol 314(3):452–466
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 handbook of
auditory research, vol 32. Springer, New York, pp 99–144
Braun CB, Baldwin ZH, Sparks JS (2012) Diversity of auditory abilities and hearing-enhancing
morphologies in Malagasy-South Asian cichlids. Paper presented at the tenth international
congress of neuroethology, College Park, MD, USA, 5–10 August 2012
Broughton RE, Betancur-R. R, Li C, Arratia G, Ortí G (2013) Multi-locus phylogenetic analysis
reveals the pattern and tempo of bony fi sh evolution. PLoS Currents Tree of Life
Buran BN, Deng XH, Popper AN (2005) Structural variation in the inner ears of four deep-sea
elopomorph fi shes. J Morphol 265:215–225
Burne RH (1913) Note on the membranous labyrinth of Neoceratodus forsteri . Anat Anz
43:396–400
Carlström D (1963) A crystallographic study of vertebrate otoliths. Biol Bull 125(3):441–463
Chardon M (1968) Anatomie comparée de l’appareil de Weber et des structures connexes chez les
siluriformes. Annales - Musee Royal de l’Afrique centrale, Sciences Zoologiques 169:1–277
Chen F, Zha D, Fridberger A, Zheng J, Choudhury N, Jacques SL, Wang RK, Shi X, Nuttall AL
(2011) A differentially amplifi ed motion in the ear for near-threshold sound detection. Nat
Neurosci 14(6):770–774
Christensen CB, Christensen-Dalsgaard J, Madsen PT (2015) Hearing of the African lungfi sh
( Protopterus annectens ) suggests underwater pressure detection and rudimentary aerial hearing in early tetrapods. J Exp Biol 218:381–387
Christensen-Dalsgaard J, Brandt C, Wilson M, Wahlberg M, Madsen PT (2011) Hearing in the
African lungfi sh ( Protopterus annectens ): pre-adaptation to pressure hearing in tetrapods? Biol
Lett 7(1):139–141
Coffi n AB, Mohr RA, Sisneros JA (2012) Saccular-specifi c hair cell addition correlates with reproductive state-dependent changes in the auditory saccular sensitivity of a vocal fi sh. J Neurosci
32(4):1366–1376
Coombs S, Popper AN (1979) Hearing differences among Hawaiian squirrelfi sh (family
Holocentridae) related to differences in the peripheral auditory system. J Comp Physiol A
132:203–207
Coombs S, Popper AN (1980) Auditory sensitivity and inner ear ultrastructure in Osteoglossum
bicirrhosum . Am Zool 20(4):785
Coombs S, Popper AN (1982) Structure and function of the auditory system in the Clown knifefi sh, Notopterus chitala . J Exp Biol 97:225–239
Dale T (1976) The labyrinthine mechanoreceptor organs of the cod Gadus morhua L. (Teleostei:
Gadidae). Norw J Zool 24:85–128
Dehadrai PV (1959) On the swimbladder and its connection with the internal ear in family
Cichlidae. Proc Natl Inst Sci India B 25(5):254–261
Deng XH (2009) Comparative studies on the structure of the ears of deep-sea fi shes. Dissertation,
University of Maryland, College Park, MD, USA
Deng XH, Wagner H-J, Popper AN (2011) The inner ear and its coupling to the swim bladder in
the deep-sea fi sh Antimora rostrata (Teleostei: Moridae). Deep-Sea Res I 58:27–37
Deng XH, Wagner H-J, Popper AN (2013) Interspecifi c variations of inner ear structure in the
deep-sea fi sh family Melamphaidae. Anat Rec 296:1064–1082
Denker A (1938) Zur Anatomie und Funktion des Labyrinths der Meerbrassen (Sparidae). Archiv
für Ohren-, Hals- und Kehlkopfheilkunde 144:417–424
Denton EJ, Gray JAB (1979) The analysis of sound by the sprat ear. Nature 282:406–407
Duncan JS, Fritzsch B (2012) Evolution of sound and balance perception: innovations that aggregate single hair cells into the ear and transform a gravistatic sensor into the organ of Corti. Anat
Rec 295:1760–1774
Diversity of Inner Ears in Fishes: Possible Contribution Towards Hearing…
Bleckmann H, Niemann U, Fritzsch B (1991) Peripheral and central aspects of the acoustic and
lateral line system of a bottom dwelling catfi sh, Ancistrus sp. J Comp Neurol 314(3):452–466
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 handbook of
auditory research, vol 32. Springer, New York, pp 99–144
Braun CB, Baldwin ZH, Sparks JS (2012) Diversity of auditory abilities and hearing-enhancing
morphologies in Malagasy-South Asian cichlids. Paper presented at the tenth international
congress of neuroethology, College Park, MD, USA, 5–10 August 2012
Broughton RE, Betancur-R. R, Li C, Arratia G, Ortí G (2013) Multi-locus phylogenetic analysis
reveals the pattern and tempo of bony fi sh evolution. PLoS Currents Tree of Life
Buran BN, Deng XH, Popper AN (2005) Structural variation in the inner ears of four deep-sea
elopomorph fi shes. J Morphol 265:215–225
Burne RH (1913) Note on the membranous labyrinth of Neoceratodus forsteri . Anat Anz
43:396–400
Carlström D (1963) A crystallographic study of vertebrate otoliths. Biol Bull 125(3):441–463
Chardon M (1968) Anatomie comparée de l’appareil de Weber et des structures connexes chez les
siluriformes. Annales - Musee Royal de l’Afrique centrale, Sciences Zoologiques 169:1–277
Chen F, Zha D, Fridberger A, Zheng J, Choudhury N, Jacques SL, Wang RK, Shi X, Nuttall AL
(2011) A differentially amplifi ed motion in the ear for near-threshold sound detection. Nat
Neurosci 14(6):770–774
Christensen CB, Christensen-Dalsgaard J, Madsen PT (2015) Hearing of the African lungfi sh
( Protopterus annectens ) suggests underwater pressure detection and rudimentary aerial hearing in early tetrapods. J Exp Biol 218:381–387
Christensen-Dalsgaard J, Brandt C, Wilson M, Wahlberg M, Madsen PT (2011) Hearing in the
African lungfi sh ( Protopterus annectens ): pre-adaptation to pressure hearing in tetrapods? Biol
Lett 7(1):139–141
Coffi n AB, Mohr RA, Sisneros JA (2012) Saccular-specifi c hair cell addition correlates with reproductive state-dependent changes in the auditory saccular sensitivity of a vocal fi sh. J Neurosci
32(4):1366–1376
Coombs S, Popper AN (1979) Hearing differences among Hawaiian squirrelfi sh (family
Holocentridae) related to differences in the peripheral auditory system. J Comp Physiol A
132:203–207
Coombs S, Popper AN (1980) Auditory sensitivity and inner ear ultrastructure in Osteoglossum
bicirrhosum . Am Zool 20(4):785
Coombs S, Popper AN (1982) Structure and function of the auditory system in the Clown knifefi sh, Notopterus chitala . J Exp Biol 97:225–239
Dale T (1976) The labyrinthine mechanoreceptor organs of the cod Gadus morhua L. (Teleostei:
Gadidae). Norw J Zool 24:85–128
Dehadrai PV (1959) On the swimbladder and its connection with the internal ear in family
Cichlidae. Proc Natl Inst Sci India B 25(5):254–261
Deng XH (2009) Comparative studies on the structure of the ears of deep-sea fi shes. Dissertation,
University of Maryland, College Park, MD, USA
Deng XH, Wagner H-J, Popper AN (2011) The inner ear and its coupling to the swim bladder in
the deep-sea fi sh Antimora rostrata (Teleostei: Moridae). Deep-Sea Res I 58:27–37
Deng XH, Wagner H-J, Popper AN (2013) Interspecifi c variations of inner ear structure in the
deep-sea fi sh family Melamphaidae. Anat Rec 296:1064–1082
Denker A (1938) Zur Anatomie und Funktion des Labyrinths der Meerbrassen (Sparidae). Archiv
für Ohren-, Hals- und Kehlkopfheilkunde 144:417–424
Denton EJ, Gray JAB (1979) The analysis of sound by the sprat ear. Nature 282:406–407
Duncan JS, Fritzsch B (2012) Evolution of sound and balance perception: innovations that aggregate single hair cells into the ear and transform a gravistatic sensor into the organ of Corti. Anat
Rec 295:1760–1774
Diversity of Inner Ears in Fishes: Possible Contribution Towards Hearing…
