Lateral Line Research: the Importance of Using Natural Stimuli
165
sensory Lateral Line. Neurobiology and Evolution. New York, Springer, pp. 99114
Hanke W, Brucker C, Bleckmann H (2000) The ageing of the low-frequency
water disturbances caused by swimming goldfish and its possible relevance to
prey detection. J Exp Bioi 203: 1193-1200
Harris GG, Bergeijk W A van (1962) Evidence that the lateral line organ responds
to near-field displacements of sound sources in water. J Acoust Soc Am
34:1831-1841
Heil P, Langner G, Scheich H (1992) Processing of frequency-modulated stimuli
in the chick auditory cortex analogue: Evidence for topographic representations
and possible mechanisms of rate and directional sensitivity. J Comp Physiol A
171:583-600
Heil P, Scheich H ( 1992) Spatial representation of frequency-modulated signals in
the tonotopically organized auditory cortex analogue of the chick. J Comp
Neurol 322:548-565
Heiligenberg W ( 1991) The neural basis of behavior: A neuroethological view.
Annu Rev Neurosci 14:247-267
Hensel H (1974) Cutaneous thermoreceptors. In: Autrum H, Jung R, Loewenstein
WR, MacKay DM (eds) Electroreceptors and Other Specialized Receptors in
Lower Vertebrates. New York, Springer, pp. 79-110
Hildebrand JG (1995) Analysis of chemical signals by nervous systems. Proc
Acad Nat Sci USA 92:67-74
Kalmijn AJ (1989) Functional evolution of lateral line and inner ear sensory
systems. In: Coombs S, Gomer P, Miinz H (eds) The Mechanosensory Lateral
Line. Neurobiology and Evolution. New York, Springer, pp. 187-216
Keller CH ( 1988) Stimulus discrimination in the diencephalon of Eigenmannia:
the emergence and sharpening of a sensory filter. J Comp Physiol A 162:747757
Konishi M (1986) Centrally synthesized maps of sensory space. Trends in
Neurosci 100:163-168
Krebs JR, Davies NB (1991) Behavioural Ecology. London, Edinburgh, Boston,
Blackwell scientific publications, pp. 1-482
McCormick CA ( 1989) Central lateral line mechanosensory pathways in bony
fish. In: Coombs S, Gomer P, Miinz H (eds) The Mechanosensory Lateral Line.
Neurobiology and Evolution. New York, Springer, pp. 341-364
McCormick CA, Hernandez DV (1996) Connections ofthe octaval and lateral line
nuclei of the medulla in the goldfish, including the cytoarchitecture of the
secondary octaval population in goldfish and catfish. Brain Behav Evol 47:113138
Mogdans J, Bleckmann H, Menger N (1997) Sensitivity of central units in the
goldfish, Carassius auratus, to transient hydrodynamic stimuli. Brain Behav
Evol 50:261-283
Mogdans J, Bleckmann H (1998) Responses of the goldfish trunk lateral line to
moving object. J Comp Physiol A 182:659-676
165
sensory Lateral Line. Neurobiology and Evolution. New York, Springer, pp. 99114
Hanke W, Brucker C, Bleckmann H (2000) The ageing of the low-frequency
water disturbances caused by swimming goldfish and its possible relevance to
prey detection. J Exp Bioi 203: 1193-1200
Harris GG, Bergeijk W A van (1962) Evidence that the lateral line organ responds
to near-field displacements of sound sources in water. J Acoust Soc Am
34:1831-1841
Heil P, Langner G, Scheich H (1992) Processing of frequency-modulated stimuli
in the chick auditory cortex analogue: Evidence for topographic representations
and possible mechanisms of rate and directional sensitivity. J Comp Physiol A
171:583-600
Heil P, Scheich H ( 1992) Spatial representation of frequency-modulated signals in
the tonotopically organized auditory cortex analogue of the chick. J Comp
Neurol 322:548-565
Heiligenberg W ( 1991) The neural basis of behavior: A neuroethological view.
Annu Rev Neurosci 14:247-267
Hensel H (1974) Cutaneous thermoreceptors. In: Autrum H, Jung R, Loewenstein
WR, MacKay DM (eds) Electroreceptors and Other Specialized Receptors in
Lower Vertebrates. New York, Springer, pp. 79-110
Hildebrand JG (1995) Analysis of chemical signals by nervous systems. Proc
Acad Nat Sci USA 92:67-74
Kalmijn AJ (1989) Functional evolution of lateral line and inner ear sensory
systems. In: Coombs S, Gomer P, Miinz H (eds) The Mechanosensory Lateral
Line. Neurobiology and Evolution. New York, Springer, pp. 187-216
Keller CH ( 1988) Stimulus discrimination in the diencephalon of Eigenmannia:
the emergence and sharpening of a sensory filter. J Comp Physiol A 162:747757
Konishi M (1986) Centrally synthesized maps of sensory space. Trends in
Neurosci 100:163-168
Krebs JR, Davies NB (1991) Behavioural Ecology. London, Edinburgh, Boston,
Blackwell scientific publications, pp. 1-482
McCormick CA ( 1989) Central lateral line mechanosensory pathways in bony
fish. In: Coombs S, Gomer P, Miinz H (eds) The Mechanosensory Lateral Line.
Neurobiology and Evolution. New York, Springer, pp. 341-364
McCormick CA, Hernandez DV (1996) Connections ofthe octaval and lateral line
nuclei of the medulla in the goldfish, including the cytoarchitecture of the
secondary octaval population in goldfish and catfish. Brain Behav Evol 47:113138
Mogdans J, Bleckmann H, Menger N (1997) Sensitivity of central units in the
goldfish, Carassius auratus, to transient hydrodynamic stimuli. Brain Behav
Evol 50:261-283
Mogdans J, Bleckmann H (1998) Responses of the goldfish trunk lateral line to
moving object. J Comp Physiol A 182:659-676
