254
Radford CA, Montgomery JC, Caiger P, Higgs DM (2012) Pressure and particle motion detection
thresholds in fi sh: a re-examination of salient auditory cues in teleosts. J Exp Biol 215(Pt
19):3429–3435. doi: 10.1242/jeb.073320
Schellart NA (1983) Acousticolateral and visual processing and their interaction in the torus semicircularis of the trout, Salmo gairdneri . Neurosci Lett 42(1):39–44
Scholik AR, Yan HY (2001) Effects of underwater noise on auditory sensitivity of a cyprinid fi sh.
Hear Res 152(1–2):17–24
Sisneros JA (2007) Saccular potentials of the vocal plainfi n midshipman fi sh, Porichthys notatus .
J Comp Physiol A Neuroethol Sens Neural Behav Physiol 193(4):413–424. doi: 10.1007/
s00359-006-0195-5
Sisneros JA (2009) Seasonal plasticity of auditory saccular sensitivity in the vocal plainfi n midshipman fi sh, Porichthys notatus . J Neurophysiol 102(2):1121–1131. doi: 10.1152/
jn.00236.2009
Sisneros JA, Bass AH (2003) Seasonal plasticity of peripheral auditory frequency sensitivity.
J Neurosci 23(3):1049–1058
Sisneros JA, Bass AH (2005) Ontogenetic changes in the response properties of individual, primary auditory afferents in the vocal plainfi n midshipman fi sh Porichthys notatus Girard. J Exp
Biol 208(Pt 16):3121–3131. doi: 10.1242/jeb.01742
Sisneros JA, Forlano PM, Deitcher DL, Bass AH (2004) Steroid-dependent auditory plasticity
leads to adaptive coupling of sender and receiver. Science 305(5682):404–407
Smith ME, Coffi n AB, Miller DL, Popper AN (2006) Anatomical and functional recovery of the
goldfi sh ( Carassius auratus ) ear following noise exposure. J Exp Biol 209(Pt 21):4193–4202
Suzuki A, Kozloski J, Crawford JD (2002) Temporal encoding for auditory computation: physiology of primary afferent neurons in sound-producing fi sh. J Neurosci 22(14):6290–6301
Tasaki I, Davis H, Eldredge DH (1954) Exploration of cochlear potentials in the guinea pig with a
microelectrode. J Acoust Soc Am 26:765–773
Tavolga WN, Wodinsky J (1963) Auditory capacities in fi shes. Bull Am Mus Nat Hist
126:177–240
Vasconcelos RO, Ladich F (2008) Development of vocalization, auditory sensitivity and acoustic
communication in the Lusitanian toadfi sh Halobatrachus didactylus . J Exp Biol 211(Pt
4):502–509. doi: 10.1242/jeb.008474
Vasconcelos RO, Amorim MC, Ladich F (2007) Effects of ship noise on the detectability of communication signals in the Lusitanian toadfi sh. J Exp Biol 210(Pt 12):2104–2112. doi: 10.1242/
jeb.004317
Vasconcelos RO, Sisneros JA, Amorim MC, Fonseca PJ (2011) Auditory saccular sensitivity of the
vocal Lusitanian toadfi sh: low frequency tuning allows acoustic communication throughout the
year. J Comp Physiol A Neuroethol Sens Neural Behav Physiol 197(9):903–913. doi: 10.1007/
s00359-011-0651-8
Wysocki LE, Codarin A, Ladich F, Picciulin M (2009) Sound pressure and particle acceleration
audiograms in three marine fi sh species from the Adriatic Sea. J Acoust Soc Am 126(4):2100–
2107. doi: 10.1121/1.3203562
Yan HY, Popper AN (1991) An automated positive reward method for measuring acoustic sensitivity in fi sh. Behav Res Methods Instrum Comput 23(3):351–356
Yan HY, Fine ML, Horn NS, Colon WE (2000) Variability in the role of the gasbladder in fi sh
audition. J Comp Physiol A 186:435–445
Zeddies DG, Fay RR, Gray MD, Alderks PW, Acob A, Sisneros JA (2012) Local acoustic particle
motion guides sound-source localization behavior in the plainfi n midshipman fi sh, Porichthys
notatus . J Exp Biol 215(Pt 1):152–160. doi: 10.1242/jeb.064998
Zelick R, Mann DA, Popper AN (1999) Acoustic communication in fi shes and frogs. In: Fay RR,
Popper AN (eds) Comparative hearing: fi shes and amphibians. Springer, New York,
pp 363–412
Zotterman Y (1943) The microphonic effect of teleost labyrinths and its biological signifi cance.
J Physiol 102(3):313–318
K.P. Maruska and J.A. Sisneros
Radford CA, Montgomery JC, Caiger P, Higgs DM (2012) Pressure and particle motion detection
thresholds in fi sh: a re-examination of salient auditory cues in teleosts. J Exp Biol 215(Pt
19):3429–3435. doi: 10.1242/jeb.073320
Schellart NA (1983) Acousticolateral and visual processing and their interaction in the torus semicircularis of the trout, Salmo gairdneri . Neurosci Lett 42(1):39–44
Scholik AR, Yan HY (2001) Effects of underwater noise on auditory sensitivity of a cyprinid fi sh.
Hear Res 152(1–2):17–24
Sisneros JA (2007) Saccular potentials of the vocal plainfi n midshipman fi sh, Porichthys notatus .
J Comp Physiol A Neuroethol Sens Neural Behav Physiol 193(4):413–424. doi: 10.1007/
s00359-006-0195-5
Sisneros JA (2009) Seasonal plasticity of auditory saccular sensitivity in the vocal plainfi n midshipman fi sh, Porichthys notatus . J Neurophysiol 102(2):1121–1131. doi: 10.1152/
jn.00236.2009
Sisneros JA, Bass AH (2003) Seasonal plasticity of peripheral auditory frequency sensitivity.
J Neurosci 23(3):1049–1058
Sisneros JA, Bass AH (2005) Ontogenetic changes in the response properties of individual, primary auditory afferents in the vocal plainfi n midshipman fi sh Porichthys notatus Girard. J Exp
Biol 208(Pt 16):3121–3131. doi: 10.1242/jeb.01742
Sisneros JA, Forlano PM, Deitcher DL, Bass AH (2004) Steroid-dependent auditory plasticity
leads to adaptive coupling of sender and receiver. Science 305(5682):404–407
Smith ME, Coffi n AB, Miller DL, Popper AN (2006) Anatomical and functional recovery of the
goldfi sh ( Carassius auratus ) ear following noise exposure. J Exp Biol 209(Pt 21):4193–4202
Suzuki A, Kozloski J, Crawford JD (2002) Temporal encoding for auditory computation: physiology of primary afferent neurons in sound-producing fi sh. J Neurosci 22(14):6290–6301
Tasaki I, Davis H, Eldredge DH (1954) Exploration of cochlear potentials in the guinea pig with a
microelectrode. J Acoust Soc Am 26:765–773
Tavolga WN, Wodinsky J (1963) Auditory capacities in fi shes. Bull Am Mus Nat Hist
126:177–240
Vasconcelos RO, Ladich F (2008) Development of vocalization, auditory sensitivity and acoustic
communication in the Lusitanian toadfi sh Halobatrachus didactylus . J Exp Biol 211(Pt
4):502–509. doi: 10.1242/jeb.008474
Vasconcelos RO, Amorim MC, Ladich F (2007) Effects of ship noise on the detectability of communication signals in the Lusitanian toadfi sh. J Exp Biol 210(Pt 12):2104–2112. doi: 10.1242/
jeb.004317
Vasconcelos RO, Sisneros JA, Amorim MC, Fonseca PJ (2011) Auditory saccular sensitivity of the
vocal Lusitanian toadfi sh: low frequency tuning allows acoustic communication throughout the
year. J Comp Physiol A Neuroethol Sens Neural Behav Physiol 197(9):903–913. doi: 10.1007/
s00359-011-0651-8
Wysocki LE, Codarin A, Ladich F, Picciulin M (2009) Sound pressure and particle acceleration
audiograms in three marine fi sh species from the Adriatic Sea. J Acoust Soc Am 126(4):2100–
2107. doi: 10.1121/1.3203562
Yan HY, Popper AN (1991) An automated positive reward method for measuring acoustic sensitivity in fi sh. Behav Res Methods Instrum Comput 23(3):351–356
Yan HY, Fine ML, Horn NS, Colon WE (2000) Variability in the role of the gasbladder in fi sh
audition. J Comp Physiol A 186:435–445
Zeddies DG, Fay RR, Gray MD, Alderks PW, Acob A, Sisneros JA (2012) Local acoustic particle
motion guides sound-source localization behavior in the plainfi n midshipman fi sh, Porichthys
notatus . J Exp Biol 215(Pt 1):152–160. doi: 10.1242/jeb.064998
Zelick R, Mann DA, Popper AN (1999) Acoustic communication in fi shes and frogs. In: Fay RR,
Popper AN (eds) Comparative hearing: fi shes and amphibians. Springer, New York,
pp 363–412
Zotterman Y (1943) The microphonic effect of teleost labyrinths and its biological signifi cance.
J Physiol 102(3):313–318
K.P. Maruska and J.A. Sisneros
