387
Jenkins DB (1979a) Anatomical investigation of the saccule in Clarius batrachus . Scan Electron
Microsc 1979:949–954
Jenkins DB (1979b) A transmission and scanning electron microscopic study of the saccule in fi ve
species of catfi shes. Am J Anat 154:81–102
Jørgensen JM (1976) Hair cell polarization in the fl atfi sh inner ear. Acta Zool 57:37–39
Kéver L, Colleye O, Herrel A, Romans P, Parmentier E (2014) Hearing capacities and otolith size
in two ophidiiform species ( Ophidion rochei and Carapus acus ). J Exp Biol 217:2517–2525
Klingenberg CP (2008) Morphological integration and developmental modularity. Annu Rev Ecol
Evol Syst 39:115–132
Krysl P, Hawkins AD, Schilt C, Cranford TW (2012) Angular oscillation of solid scatterers in
response to progressive planar acoustic waves: do fi sh otoliths rock? PLoS One 7(8), e42591
Ladich F (2014a) Diversity in hearing in fi shes: ecoacoustical, communicative, and developmental
constraints. In: Köppl C, Manley GA, Popper AN, Fay RR (eds) Insights from comparative
hearing research. Springer handbook of auditory research, vol 49. Springer, New York,
pp 238–321
Ladich F (2014b) Fish bioacoustics. Curr Opin Neurobiol 28:121–127
Ladich F, Fay RR (2013) Auditory evoked potential audiometry in fi sh. Rev Fish Biol Fish
23:317–364
Ladich F, Popper AN (2001) Comparison of the inner ear ultrastructure between teleost fi shes
using different channels for communication. Hear Res 154(1–2):62–72
Ladich F, Popper AN (2004) Parallel evolution in fi sh hearing organs. In: Manley G, Fay RR,
Popper AN (eds) Evolution of the vertebrate auditory system. Springer handbook of auditory
research, vol 22. Springer, New York, pp 95–127
Ladich F, Yan HY (1998) Correlation between auditory sensitivity and vocalization in anabantoid
fi shes. J Comp Physiol A Sens Neural Behav Physiol 182(6):737–746
Lechner W, Ladich F (2008) Size matters: diversity in swimbladders and Weberian ossicles affects
hearing in catfi shes. J Exp Biol 211(10):1681–1689
Lombarte A, Fortuno JM (1992) Differences in morphological features of the sacculus of the inner
ear of two hakes ( Merluccius capensis and M. paradoxus , Gadiformes) inhabits from different
depth of sea. J Morphol 214(1):97–107
Lombarte A, Popper AN (1994) Quantitative analyses of postembryonic hair cell addition in the
otolithic endorgans of the inner ear of the Europan hake, Merluccius merluccius (Gadiformes,
Teleostei). J Comp Neurol 345(3):419–428
Lombarte A, Popper AN (2004) Quantitative changes in the otolithic organs of the inner ear during
the settlement period in European hake Merluccius merluccius . Mar Ecol Prog Ser
267:233–240
Lovell JM, Findlay MM, Harper G, Moate RM, Pilgrim DA (2005a) The polarisation of hair cells
from the ear of the European bass ( Dicentrarchus labrax ). Comp Biochem Physiol A
141:116–121
Lovell JM, Findlay MM, Moate RM, Nedwell JR, Pegg MA (2005b) The inner ear morphology
and hearing abilities of the Paddlefi sh ( Polyodon spathula ) and the Lake Sturgeon ( Acipenser
fulvescens ). Comp Biochem Physiol A 142:286–296
Lovell JM, Findlay MM, Moate RM, Pilgrim DA (2005c) The polarization of inner ear ciliary
bundles from a scorpaeniform fi sh. J Fish Biol 66:836–846
Lu Z, Popper AN (1998) Morphological polarizations of sensory hair cells in the three otolithic
organs of a teleost fi sh: fl uorescent imaging of ciliary bundles. Hear Res 126(1–2):47–57
Lu Z, Popper AN (2001) Neural response directionality correlates of hair cell orientation in a
teleost fi sh. J Comp Physiol A Sens Neural Behav Physiol 187(6):453–465
Lu Z, Song J, Popper AN (1998) Encoding of acoustic directional information by saccular afferents of the sleeper goby, Dormitator latifrons . J Comp Physiol A Sens Neural Behav Physiol
182(6):805–815
Lu Z, Xu Z, Buchser WJ (2003) Acoustic response properties of lagenar nerve fi bers in the sleeper
goby, Dormitator latifrons . J Comp Physiol A Neuroethol Sens Neural Behav Physiol
189(12):889–905
Diversity of Inner Ears in Fishes: Possible Contribution Towards Hearing…
Précédent

- 395/488

Suivant