Brainstem lateral line responses to sinusoidal wave stimuli in still and running water.
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[1] R. Northcutt,et al. Morphology, distribution and innervation of the lateral-line receptors of the Florida gar, Lepisosteus platyrhincus. , 1991, Brain, behavior and evolution.
[2] S Coombs,et al. Form and function relationships in lateral line systems: comparative data from six species of Antarctic notothenioid fish. , 1994, Brain, behavior and evolution.
[3] S. Coombs,et al. Cytoarchitecture of the medial octavolateralis nucleus in the goldfish, Carassius auratus , 1996, The Journal of comparative neurology.
[4] J. Gray,et al. Some Observations on the Forces Acting on Neuromasts in Fish Lateral Line Canals , 1989 .
[5] W Hanke,et al. The puzzle of hydrodynamic information processing: how are complex water motions analyzed by the lateral line? , 1999, European journal of morphology.
[6] J. Montgomery,et al. Sensory contributions to nocturnal prey capture in the dwarf scorpion fish (Scorpaena papillosus) , 1997 .
[7] H. Bleckmann,et al. Responses of the goldfish trunk lateral line to moving objects , 1998, Journal of Comparative Physiology A.
[8] Jelle Atema,et al. Sensory Biology of Aquatic Animals , 1988, Springer New York.
[9] C. Campenhausen,et al. Discrimination between stationary objects by the blind cave fishAnoptichthys jordani (Characidae) , 1981, Journal of comparative physiology.
[10] J. Montgomery,et al. The lateral line can mediate rheotaxis in fish , 1997, Nature.
[11] J. Janssen,et al. Non-visual feeding behavior of the mottled sculpin, Cottus bairdi, in Lake Michigan , 1985, Environmental Biology of Fishes.
[12] R. Northcutt. The Phylogenetic Distribution and Innervation of Craniate Mechanoreceptive Lateral Lines , 1989 .
[13] H. Bleckmann,et al. The ageing of the low-frequency water disturbances caused by swimming goldfish and its possible relevance to prey detection. , 2000, The Journal of experimental biology.
[14] J. Webb,et al. Developmental Constraints and Evolution of the Lateral Line System in Teleost Fishes , 1989 .
[15] A. Fleck,et al. The responses of central octavolateralis cells to moving sources , 1996, Journal of Comparative Physiology A.
[16] R L Puzdrowski,et al. Peripheral distribution and central projections of the lateral-line nerves in goldfish, Carassius auratus. , 1989, Brain, behavior and evolution.
[17] John C. Montgomery,et al. Peripheral encoding of moving sources by the lateral line system of a sit-and-wait predator , 1998, The Journal of experimental biology.
[18] J. Gray,et al. Mechanical Factors in the Excitation of the Lateral Lines of Fishes , 1988 .
[19] H. Bleckmann,et al. Hydrodynamic stimuli and the fish lateral line , 2000, Nature.
[20] Responses of midbrain lateral line units of the goldfish, Carassius auratus, to constant-amplitude and amplitude-modulated water wave stimuli , 1999, Journal of Comparative Physiology A.
[21] T. Pitcher,et al. The sensory basis of fish schools: Relative roles of lateral line and vision , 1980, Journal of comparative physiology.
[22] S Coombs,et al. Fibers innervating different parts of the lateral line system of an Antarctic notothenioid, Trematomus bernacchii, have similar frequency responses, despite large variation in the peripheral morphology. , 1992, Brain, behavior and evolution.
[23] J. Goldberg,et al. Response of binaural neurons of dog superior olivary complex to dichotic tonal stimuli: some physiological mechanisms of sound localization. , 1969, Journal of neurophysiology.
[24] Lee A. Fuiman,et al. Function of the Free Neuromasts of Marine Teleost Larvae , 1989 .
[25] E. Hassan. Hydrodynamic Imaging of the Surroundings by the Lateral Line of the Blind Cave Fish Anoptichthys jordani , 1989 .
[26] T. Pitcher,et al. A blind fish can school. , 1976, Science.
[27] D. Bodznick,et al. An adaptive filter that cancels self-induced noise in the electrosensory and lateral line mechanosensory systems of fish , 1994, Neuroscience Letters.
[28] T. Pitcher,et al. Sensory information and the organization of behaviour in a shoaling cyprinid fish , 1979, Animal Behaviour.
[29] J. Mogdans,et al. Brainstem lateral line responses to sinusoidal wave stimuli in the goldfish, Carassius auratus. , 2001, Zoology.
[30] R. Voigt,et al. Responses of anterior lateral line afferent neurones to water flow. , 2000, The Journal of experimental biology.
[31] E. Batschelet. Circular statistics in biology , 1981 .
[32] R. Wubbels,et al. AFFERENT RESPONSE OF A HEAD CANAL NEUROMAST OF THE RUFF (ACERINA-CERNUA) LATERAL LINE , 1992 .
[33] H. Bleckmann,et al. Sensitivity of central units in the goldfish, Carassius auratus, to transient hydrodynamic stimuli. , 1997, Brain, behavior and evolution.
[34] H. Bleckmann,et al. The responses of peripheral and central mechanosensory lateral line units of weakly electric fish to moving objects , 1993, Journal of Comparative Physiology A.
[35] S. Coombs,et al. The orienting response of Lake Michigan mottled sculpin is mediated by canal neuromasts. , 2001, The Journal of experimental biology.
[36] John C. Montgomery,et al. The Enigmatic Lateral Line System , 1999 .
[37] Sheryl Coombs,et al. Behavioral and neurophysiological assessment of lateral line sensitivity in the mottled sculpin, Cottus bairdi , 1990, Journal of Comparative Physiology A.
[38] Lawrence S. Frishkopf,et al. Receptor Potentials from Hair Cells of the Lateral Line , 1970, Science.
[39] Toshiya Matsushima,et al. Vibrational communication during spawning behavior in the himé salmon (landlocked red salmon,Oncorhynchus nerka) , 1991, Journal of Comparative Physiology A.
[40] M. Kusunoki,et al. Rhythmic electromyographic activities of trunk muscles characterize the sexual behavior in the Himé salmon (landlocked sockeye salmon,Oncorhynchus nerka) , 1989, Journal of Comparative Physiology A.
[41] Gerard G. Harris,et al. Evidence that the Lateral‐Line Organ Responds to Near‐Field Displacements of Sound Sources in Water , 1962 .
[42] Halstead,et al. Hindbrain signal processing in the lateral line system of the dwarf scorpionfish Scopeana papillosus , 1996, The Journal of experimental biology.
[43] N A Schellart,et al. Velocity- and acceleration-sensitive units in the trunk lateral line of the trout. , 1992, Journal of neurophysiology.
[44] S Coombs,et al. Physiological characterization of lateral line function in the Antarctic fish Trematomus bernacchii. , 1992, Brain, behavior and evolution.
[45] H. Bleckmann. Reception of hydrodynamic stimuli in aquatic and semiaquatic animals , 1994 .
[46] C. F. Baker,et al. The sensory basis of rheotaxis in the blind Mexican cave fish, Astyanax fasciatus , 1999, Journal of Comparative Physiology A.
[47] C. Campenhausen,et al. Detection of stationary objects by the blind Cave FishAnoptichthys jordani (Characidae) , 1981, Journal of comparative physiology.
[48] J. Mogdans,et al. Transformation of peripheral inputs by the first-order lateral line brainstem nucleus , 1998, Journal of Comparative Physiology A.
[49] Horst Bleckmann,et al. THE RESPONSES OF MIDBRAIN LATERAL LINE UNITS OF THE GOLDFISH, CARASSIUS AURATUS, TO OBJECTS MOVING IN THE WATER , 1998 .