Sonic characteristics and mechanisms in marine fishes. Tavolga WN, Marine Bio-acoustics Oxford: Pergamon Press, Tavolga WN, 1964 195 211
The quest for speed: muscles built for high-frequency contractions. Rome LC, Linstedt SL, News Physiol Sci 1998 13 26 268 11390755
The production of sound in the drumfishes, the searobin and the toadfish. Tower RW, Ann N Y Acad Sci 1908 18 149 180 10.1111/j.1749-6632.1908.tb55101.x
Movement and soung generation by toadfish swimbladder. Fine ML, Malloy KL, King CB, Mitchell SL, Cameron TM, J Comp Physiol A 2001 187 371 379 10.1007/s003590100209 11529481 (Pubitemid 32731533)
Novel vocal repertoire and paired swimbladders of the three-spined toadfish, Batrachomoeus trispinosus: insights into the diversity of the Batrachoididae. Rice AN, Bass AH, J Exp Biol 2009 212 9 1377 1391 10.1242/jeb.028506 19376959
Acoustical properties of the swimbladder in the oyster toadfish Opsanus tau. Fine ML, King CB, Cameron TM, J Exp Biol 2009 212 21 3542 3552 10.1242/jeb.033423 19837896
Sound generation in the searobin (Prionotus carolinus), a fish with alternate sonic muscle contraction. Connaughton MA, J Exp Biol 2004 207 10 1643 1654 10.1242/jeb.00928 15073197 (Pubitemid 38630494)
Über die Lauterzeugung der Welse (Siluroidei, Ostariophysi, Teleostei) und ihren Zusammenhang mit der Phylogenese und der Schreckreaktion. Heyd A, Pfeiffer W, Rev Suisse Zool 2000 107 165 211
Sound-generating and -detecting motor system in catfish: design of swimbladder muscles in doradids and pimelodids. Ladich F, Anat Rec 2001 263 297 306 10.1002/ar.1105 11455539 (Pubitemid 32959319)
Schallerzeugung bei Piranhas (Serrasalminae, Characidae). Markl H, J Comp Physiol A 1971 74 1 39 56
Sonic motor pathways in piranhas with a reassessment of phylogenetic patterns of sonic mechanisms among teleosts. Ladich F, Bass AH, Brain Behav Evol 2005 66 167 176 10.1159/000087157 16088101 (Pubitemid 41291522)
Economy of sound production in piranhas (Serrasalminae, Characidae): I. Functional properties of sonic muscles. Kastberger G, Zool Jahrb Physiol 1981 85 113 125
The effect of seasonal hypertrophy and atrophy of fiber morphology, metabolic substrate concetration and sound characteristics of the weakfish sonic muscle. Connaughton MA, Fine ML, Taylor MH, J Exp Biol 1997 200 2449 2457 9343856 (Pubitemid 27439756)
Structure and innervations of the swimbladder musculature in the weakfish, Cynoscion regalis (Teleostei: Sciaenidae). Ono RD, Poss SG, Can J Zool 1982 60 1955 1967 10.1139/z82-253
Spawning sounds in meagre Argyrosomus regius recorded in the Gironde estuary. Lagardère JP, Mariani A, France. J Fish Biol 2006 69 6 1697 1708 10.1111/j.1095-8649.2006.01237.x (Pubitemid 44952319)
Sound production, spine locking and related adaptations. Fine ML, Ladich F, Catfishes Enfield: Science Publishers, Kapoor BG, Arratia G, Chardon M, Diogo R, 2003 248 290
Evolutionary trends of swimbladder sound mechanisms in some teleost fishes. Parmentier E, Diogo R, Communication in Fishes, Volume 1 Enfield, NH: Science Publishers 2006 45 70
Functional analysis of swimbladder muscles engaged in sound production of the toadfish. Skoglund C, J Biophys Biochem Cytology 1961 10 187 200 10.1083/jcb.10.4.187
Communication signals and sound production mechanisms of mormyrid electric fish. Crawford JD, Huang X, J Exp Biol 1999 202 1417 1426 10210682 (Pubitemid 29285346)
Neural mechanisms and behaviors for acoustic communication in teleost fish. Bass AH, McKibben JR, Prog Neurobiol 2003 69 1 1 26 10.1016/S0301-0082(03) 00004-2 12637170 (Pubitemid 36293989)
Ontogeny of acoustic and feeding behaviour in the grey gurnard, Eutrigla gurnardus. Amorim MCP, Hawkins AD, Ethology 2005 111 3 255 269 10.1111/j.1439-0310.2004.01061.x (Pubitemid 40393984)
The single sonic muscle twitch model for the sound-production mechanism in the weakfish, Cynoscion regalis. Sprague MW, J Acoust Soc Am 2000 108 5 2430 2437 10.1121/1.1315296 11108383
Über die Schwimmblase und die zu ihr in Beziehung tretenden somatischen Muskeln bei den Trigliden und anderen Scleroparei. Rauther M, Zool Jahrb Anat 1945 69 159 250
Mechanism of sound production in the ariid catfish Galeichthys and Bagre. Tavolga WN, Bull Am Mus Nat Hist 1962 24 1 30
Early events in myofibrillogenesis and innervation of skeletal sound-generating muscle in a teleost fish. Lindholm MM, Bass AH, J Morphol 1993 216 225 239 10.1002/jmor.1052160209 8515479
Localization of swim bladder and pectoral motoneurons involved in sound production in pimelodid catfish. Ladich F, Fine ML, Brain Behav Evol 1994 44 86 100 10.1159/000113572 7953611
The sarcoplasmic reticulum of a fast-acting fish muscle. Fawcett DW, Revel JP, J Biophys Biochem Cytol 1961 10 89 109 10.1083/jcb.10.4.89 13698423
Sound-generating (sonic) motor system in a teleost fish (Porichthys notatus): Sexual polymorphisms and general synaptology of sonic motor nucleus. Bass AH, Marchaterre MA, J Comp Neurol 1989 286 2 154 169 10.1002/cne.902860203 2794113 (Pubitemid 19220589)
Functional morphology of toadfish sonic muscle fibers: relationship to possible fiber division. Fine ML, Bernard B, Harris TM, Can J Zool 1993 71 11 2262 2274 10.1139/z93-318
Embryonic, juvenile, and adult development of the toadfish sonic muscle. Loesser KE, Rafi J, Fine ML, Anat Rec 1997 249 469 477 10.1002/(SICI)1097- 0185(199712)249:4<469::AID-AR6>3.0.CO;2-M 9415454 (Pubitemid 27521595)
Structural correlates of speed and endurance in skeletal muscle: the rattlesnake tailshaker muscle. Schaeffer P, Conley K, Lindstedt S, J Exp Biol 1996 199 2 351 358 9317944 (Pubitemid 126603975)
Quantitation of Ca ATPase, feet and mitochondria in super fast muscle fibers from the toadfish, Opsanus tau. Appelt D, Shen V, Franzini-Armstrong C, J Muscle Res Cell Motil 1991 12 543 552 10.1007/BF01738442 1838745
Sound-generating mechanisms in fishes: a unique diversty in vertebrates. Ladich F, Fine M, Communication in Fishes, Volume 1 Enfield, NH: Science Publishers, Ladich F, Collin SP, Moller P, Kapoor BG, 2006 3 34
The whistle and the rattle: the design of sound producing muscles. Rome LC, Syme DA, Hollingworth S, Lindstedt S, Maylor SM, Proc Natl Acad Sci 1996 93 8095 8100 10.1073/pnas.93.15.8095 8755609 (Pubitemid 26277171)
Trading force for speed: why superfast crossbridge kinetics leads to superlow forces. Rome LC, Cook C, Syme DA, Connaughton MA, Ashley-Ross M, Klimov A, Tikkunov B, Goldman YE, Proc Natl Acad Sci 1999 95 5826 5831 (Pubitemid 29234703)
Composition of sarcoplasmic reticulum in situ by electron probe X-ray microanalysis. Somlyo AV, Shurman H, Somlyo AP, Nature 1977 268 556 558 10.1038/268556a0 887175 (Pubitemid 8153913)
Comparison of sarcoplasmic reticulum capabilities in toadfish (Opsanus tau) sonic muscle and rat fast twitch muscle. Feher J, Waybright T, Fine M, J Muscle Res Cell Motil 1998 19 6 661 674 10.1023/A:1005333215172 9742450 (Pubitemid 28380405)
Multiple innervation of fish skeletal muscle. Gainer H, Experiments in Physiology and Biochemistry, Volume 2 New York, NY: Academic, Kerkut GA, 1969 191 208
Continuous adult development of multiple innervation in toadfish sonic muscle. Hirsch JE, Bigbee JW, Fine ML, J Neurobiol 1998 36 348 356 10.1002/(SICI)1097-4695(19980905)36:3<348::AID-NEU4>3.0.CO;2-W 9733071 (Pubitemid 28397146)
Protein differentiation of the superfast swimbladder muscle of the toadfish Opsanus tau. Hamoir G, Gerardin-Otthiers N, Focant B, J Mol Biol 1980 143 1 155 160 10.1016/0022-2836(80)90129-1 7441760
Swimming of larval zebrafish: ontogeny of body waves and implications for locomotory development. Müller UK, van Leeuwen JL, J Exp Biol 2004 207 5 853 868 10.1242/jeb.00821 14747416 (Pubitemid 38261399)
Activation of Embryonic Red and White Muscle Fibers During Fictive Swimming in the Developing Zebrafish. Buss RR, Drapeau P, J Neurophysiol 2002 87 3 1244 1251 11877498 (Pubitemid 34670791)
Ontogeny of swimming movements in bronze corydoras (Corydoras aeneus). Mauguit Q, Olivier D, Vandewalle N, Vandewalle P, Can J Zool 2010 88 4 378 389 10.1139/Z10-012
Sound production in red-bellied piranhas (Pygocentrus nattereri, Kner): an acoustical, behavioural and morphofunctional study. Millot S, Vandewalle P, Parmentier E, J Exp Biol 2011 214 21 3613 3618 10.1242/jeb.061218 21993790
Differentiation of muscle fiber types in the teleost Brachydanio rerio, the zebrafish. Raamsdonk W, Veer L, Veeken K, Heyting C, Pool CW, Anat Embryol 1982 164 1 51 62 10.1007/BF00301878 7114488 (Pubitemid 12124649)
Myosin flares and actin leptomeres as myofibril assembly/disassembly intermediates in sonic muscle fibers. Nahirney P, Fischman D, Wang K, Cell Tissue Res 2006 324 1 127 138 10.1007/s00441-005-0110-3 16425023 (Pubitemid 43320248)
Fine structure of the drum Muscles of the Piranha (Serrasalminae, Characidae). Eichelberg H, Cell Tissue Res 1977 185 547 555 606368
The sounds of bicolor damselfish (Pomacentrus partitus): predictors of body size and a spectral basis for individual recognition and assessment. Myrberg AAJ, Ha SJ, Shamblott MJ, J Acoust Soc Am 1993 94 3067 3070 10.1121/1.407267 (Pubitemid 24000815)
Spawning sounds of the damselfish, Dascyllus albisella (Pomacentridae), and relationship to male size. Lobel PS, Mann DA, Bioacoustics 1995 6 187 198 10.1080/09524622.1995.9753289
Effects of fish size and temperature on weakfish disturbance calls: implications for the mechanism of sound generation. Connaughton M, Taylor M, Fine M, J Exp Biol 2000 203 1503 1512 10751166 (Pubitemid 30351521)
Agonistic sounds in the skunk clownfish Amphiprion akallopisos: size-related variation in acoustic features. Colleye O, Frederich B, Vandewalle P, Casadevall M, Parmentier E, J Fish Biol 2009 75 4 908 916 10.1111/j.1095-8649.2009.02316.x 20738587
Hearing ability in three clownfish species. Parmentier E, Colleye O, Mann D, J Exp Biol 2009 212 2023 2026 10.1242/jeb.030270 19525428
Ontogenetic development of auditory sensitivity and sound production in the squeaker catfish Synodontis schoutedeni. Lechner W, Wysocki L, Ladich F, BMC Biol 2010 8 1 10 10.1186/1741-7007-8-10 20113466
Development of vocalization, auditory sensitivity and acoustic communication in the Lusitanian toadfish Halobatrachus didactylus. Vasconcelos RO, Ladich F, J Exp Biol 2008 211 502 509 10.1242/jeb.008474 18245626 (Pubitemid 351428876)
Comparative study on sound production in different Holocentridae species. Parmentier E, Vandewalle P, Brie C, Dinraths L, Lecchini D, Front Zool 2011 8 1 12 10.1186/1742-9994-8-12 21609479
Predicting patterns of prey use from morphology of fishes. Wainwright P, Richard B, Environ Biol Fishes 1995 44 1-3 97 113
Scaling of contractile properties of catfish feeding muscles. Van Wassenbergh S, Herrel A, James RS, Aerts P, J Exp Biol 2007 210 7 1183 1193 10.1242/jeb.000109 17371917 (Pubitemid 46731927)
Bradbury J, Vehrencamp S, Principles of animal communication Sunderland, Massachusetts: Sinauer Associates, Inc. 1998
Ontogeny of the sexually dimorphic sonic muscle in three sciaenid species. Hill G, Fine M, Musick J, Copeia 1987 3 708 713
Spinal nerve innervation to the sonic muscle and sonic motor nucleus in red piranha, Pygocentrus nattereri (Characiformes, Ostariophysi). Onuki A, Ohmori Y, Somiya H, Brain Behav Evol 2006 67 2 111 122 10.1159/000089185 16254416 (Pubitemid 43162714)
Hyperplastic and hypertrophic growth of lateral muscle in Dicentrarchus labrax (L.). Veggetti A, Mascarello F, Scapolo PA, Rowlerson A, Anat Embryol 1990 182 1 1 10 2240590
Differentiation and growth of muscle in the fish Sparus aurata (L): II. Hyperplastic and hypertrophic growth of lateral muscle from hatching to adult. Rowlerson A, Mascarello F, Radaelli G, Veggetti A, J Muscle Res Cell Motil 1995 16 3 223 236 10.1007/BF00121131 7559995
Task-specific design of skeletal muscle: balancing muscle structural composition. Lindstedt SL, McGlothlin T, Percy E, Pifer J, Comp Biochem Physiol Part B Biochem Mol Biol 1998 120 1 35 40 10.1016/S0305-0491(98)00021-2 (Pubitemid 28359471)
Expression of myofibrillar proteins and parvalbumin isoforms in white muscle of dorada during development. Huriaux F, Baras E, Vandewalle P, Focant B, J Fish Biol 2003 62 4 774 792 10.1046/j.1095-8649.2003.00064.x (Pubitemid 38718033)
Expression of myofibrillar proteins and parvalbumin isoforms during the development of a flatfish, the common sole Solea solea: comparison with the turbot Scophthalmus maximus. Focant B, Vandewalle P, Huriaux F, Comp Biochem Physiol Part B Biochem Mol Biol 2003 135 3 493 502 10.1016/S1096-4959(03)00116-7 (Pubitemid 36782398)
Myosin, parvalbumin and myofibril expression in barbel (Barbus barbus L.) lateral white muscle during development. Focant B, Huriaux F, Vandewalle P, Castelli M, Goessens G, Fish Physiol Biochem 1992 10 2 133 143 10.1007/BF00004524 24214210
Developmental changes in the composition of myofibrillar proteins in the swimming muscles of Atlantic herring, Clupea harengus. Crockford T, Johnston IA, Mar Biol 1993 115 1 15 22 10.1007/BF00349381