Vibration Communication in Vertebrates
145
Capranica RR, Moffat, AJM (1980) Nonlinear properties of the peripheral
auditory system of anurans. In: AN Popper, RR Fay (eds) Comparative Studies
of Hearing in Vertebrates, New York, Springer-Verlag, pp 139-165
Christensen-Dalsgaard J, Jorgensen MB (1996) One-tone suppression in the frog
auditory nerve. J Acoust Soc Am 100: 451-457
Christensen-Dalsgaard, J, Narins, PM (1993) Sound and vibration sensitivity of
VIIIth nerve fibers in the frogs Leptodactylus albilabris and Rana pipiens
pipiens. J Comp Physiol A 172: 653-662
Cooper FC (1928) On the ear region of certain of the Chrysochloridae. Phil Trans
R Soc [Bioi] 216: 265-283
van Dijk P, Wit HP, Segenhout JM (1997a) Dissecting the frog inner ear with
Gaussian noise I Application of high-order Wiener kernel analysis. Hearing Res
114: 229-242
van Dijk P, Wit HP, Segenhout JM (1997b) Dissecting the frog inner ear with
Gaussian noise II Temperature dependence of inner-ear function. Hearing Res
114: 243-251
van Dijk P, Wit HP, Segenhout JM, Tubis A (1994) Wiener kernel analysis of
inner ear function in the American bullfrog. J Acoust Soc Am 95: 904-919
Dimmit MA, Ruibal R (1980) Environmental correlates of emergences in spadefoot toads (Scaphiopus). J Herpetoll4: 21-29
DuBost G (1968) Les mammiferes souterrains. 1. L'adaptation morphologique a Ia
vie souterrain. Rev Ecol Bioi Sol5: 99-133
Dunia R, Narins PM (1989) Temporal integration in an anuran auditory nerve.
Hearing Res 39: 287-298
DuToit JT, Jarvis JUM, Louw GN (1985) Nutrition and burrowing energetics of
the Cape mole-rat Georychus capensis. Oecologia 66: 81-87
Evans EF (1977) Frequency selectivity at high signal levels of single units in
cochlear nerve and cochlear nucleus. In: Evans EF, Wilson JP (eds)
Psychophysics and Physiology of Hearing. London, Academic Press, pp 185192
Feng AS (1980) Directional characteristics of the acoustic receiver of the leopard
frog (Rana pipiens): A study of eighth nerve auditory responses. J Acoust Soc
Am68: 1107-1114
Feng AS (1982) Quantitative analysis of intensity-rate and intensity-latency
functions in peripheral auditory nerve fibers of northern leopard frogs (Rana
pipiens). Hearing Res 6: 241-246
Feng AS, Narins PM, Capranica RR (1975) Three populations of primary auditory
fibers in the bullfrog (Rana catesbeiana): their peripheral origins and frequency
selectivities. J Comp Physiol I 00: 221-229
Fielden LJ, Hickman GC, Perrin MR (1992) Locomotory activity in the Namib
Desert golden mole, Eremitalpa granti namibensis (Chrysochloridae). J Zoo!
Lond 226: 329-344
145
Capranica RR, Moffat, AJM (1980) Nonlinear properties of the peripheral
auditory system of anurans. In: AN Popper, RR Fay (eds) Comparative Studies
of Hearing in Vertebrates, New York, Springer-Verlag, pp 139-165
Christensen-Dalsgaard J, Jorgensen MB (1996) One-tone suppression in the frog
auditory nerve. J Acoust Soc Am 100: 451-457
Christensen-Dalsgaard, J, Narins, PM (1993) Sound and vibration sensitivity of
VIIIth nerve fibers in the frogs Leptodactylus albilabris and Rana pipiens
pipiens. J Comp Physiol A 172: 653-662
Cooper FC (1928) On the ear region of certain of the Chrysochloridae. Phil Trans
R Soc [Bioi] 216: 265-283
van Dijk P, Wit HP, Segenhout JM (1997a) Dissecting the frog inner ear with
Gaussian noise I Application of high-order Wiener kernel analysis. Hearing Res
114: 229-242
van Dijk P, Wit HP, Segenhout JM (1997b) Dissecting the frog inner ear with
Gaussian noise II Temperature dependence of inner-ear function. Hearing Res
114: 243-251
van Dijk P, Wit HP, Segenhout JM, Tubis A (1994) Wiener kernel analysis of
inner ear function in the American bullfrog. J Acoust Soc Am 95: 904-919
Dimmit MA, Ruibal R (1980) Environmental correlates of emergences in spadefoot toads (Scaphiopus). J Herpetoll4: 21-29
DuBost G (1968) Les mammiferes souterrains. 1. L'adaptation morphologique a Ia
vie souterrain. Rev Ecol Bioi Sol5: 99-133
Dunia R, Narins PM (1989) Temporal integration in an anuran auditory nerve.
Hearing Res 39: 287-298
DuToit JT, Jarvis JUM, Louw GN (1985) Nutrition and burrowing energetics of
the Cape mole-rat Georychus capensis. Oecologia 66: 81-87
Evans EF (1977) Frequency selectivity at high signal levels of single units in
cochlear nerve and cochlear nucleus. In: Evans EF, Wilson JP (eds)
Psychophysics and Physiology of Hearing. London, Academic Press, pp 185192
Feng AS (1980) Directional characteristics of the acoustic receiver of the leopard
frog (Rana pipiens): A study of eighth nerve auditory responses. J Acoust Soc
Am68: 1107-1114
Feng AS (1982) Quantitative analysis of intensity-rate and intensity-latency
functions in peripheral auditory nerve fibers of northern leopard frogs (Rana
pipiens). Hearing Res 6: 241-246
Feng AS, Narins PM, Capranica RR (1975) Three populations of primary auditory
fibers in the bullfrog (Rana catesbeiana): their peripheral origins and frequency
selectivities. J Comp Physiol I 00: 221-229
Fielden LJ, Hickman GC, Perrin MR (1992) Locomotory activity in the Namib
Desert golden mole, Eremitalpa granti namibensis (Chrysochloridae). J Zoo!
Lond 226: 329-344
