6. SOUND PRODUCTION AND DETECTION
195
Farkas, B. (1938a). Uber den schalleitenden Apparat der Knochenfische. I. Fenestra
Sacculi, Protoperculum und Protocolumella bei Lebistes reticuhtus Pet. Z.
Morphol. Oekol. Tiere 34, 367415.
Farkas, B. ( 193813). Zur Kenntnis des Baues und der Funktion des Saccolithen der
Knochenfische. Zool. Anz. 11, Suppl., 193-206.
Fawcett, D. W., and Revel, J. P. (1961). The sacroplasmic reticulum of a fast-acting
fish muscle. 3. Biophys. Biochem. Cytol. 10, Suppl., 89-109.
Ffowcs-Williams, J. E. (1967). Flow noise. In “Underwater Acoustics” (V. M. Albers,
ed.), Vol. 2, pp. 89-102. Plenum Press, New York.
Fish, M. P. (1953). The production of underwater sound by the northern seahorse,
Hippocampus hudsonius. Copeia pp. 98-99.
Fish, M. P. (1954). The character and significance of sound production among
fishes of the western North Atlantic. Bull. Bingham Oceanog. Coll. 14, 1-109.
Fish, M. P. (1964). Biological sources of sustained ambient noise. In “Marine BioAcoustics” (W. N. Tavolga, ed.), pp. 17.5194. Pergamon Press, Oxford.
Fish, M. P., and Mowbray, W. H. ( 1959). The production of underwater sounds by
Opsanw sp., a new toadfish from Bimini, Bahamas. Zoologica 44, 71-76.
Fish, M. P., Kelsey, A. S., Jr., and Mowbray, W. M. (1952). Studies on the production of underwater sound by North Atlantic coastal fishes. J. Marine Res. 11,
180-193.
Fletcher, H., and Munson, W. A. (1937). Relation between loudness and masking.
J. Acoust. SOC. Am. 9, 1-10.
Flock, A., and Wersall, J. (1962). A study of the orientation of the sensory hairs
of the receptor cells in the lateral line organ of fish, with special reference to
the function of the receptors. J. Cell Biol. 15, 19-27.
Frings, H., and Frings, M. (1964). “Animal Communication.” Ginn (Blaisdell),
Boston, Massachusetts.
Froese, H. ( 1938 ) . Vergleichend-Anatomische Studien iiber das Knochenfischlabyrinth. Z. Morphol. Oekol. Tiere 34, 610-646.
Froloff, J. (1925). Bedingte Reflexe bei Fischen. I. Arch. Ges. Physiol. 208, 216-271.
Furakawa, T., and Ishii, Y. (1967a). Effects of static bending of sensory hairs on
sound reception in the goldfish. Japan. J. Physiol. 17, 572-588.
Furakawa, T., and Ishii, Y. (1967b). Neurophysiological studies on hearing in goldfish. J. Neurophysiol. 30, 1377-1403.
Gainer, H., and Klancher, J. E. (1965). Neuromuscular junctions in a fast-contracting
fish muscle. Comp. Biochem. Physiol. 15, 159-165.
Gainer, H., Kusano, K., and Mathewson, R. F. (1965). Electrophysiological and
mechanical properties of squirrelfish sound-producing muscle. Comp. Biochem.
Physiol. 14, 661-671.
Galler, S. R. ( 1967 ), Marine bio-acoustics-the bridge between “useless” research and
applied information. In “Marine Bio-Acoustics” (W. N. Tavolga, ed.), Vol. 2,
pp. 1-6. Pergamon Press, Oxford.
Geoffroy St. Hilaire, I. (1829). Histoire naturelle des poissons du Nil. In “D6scription
de l’cgypt,” 2nd ed., Vol. 24, pp. 141-338.
Grass&, P.-P. (1958). L’oreille et ses annexes. In ‘‘Trait6 de Zoologie” (P.-P. Grass&,
ed.), Vol. 13, pp. 1063-1098. Masson, Paris.
Gray, G.-A,, and Winn, H. E. (1961). Reproductive ecology and sound production
of the toadfish, Opsanus tau. Ecology 42, 274-282.
Greene, C. W. (1924). Physiological reactions and structure of the vocal apparatus
of the California singing fish. Am. J. Physiol. 70, 496499.
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