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Bell, C. C (1981). Central distribution of octavolateral afferents and efferents in a teleost (Mormyridae). J. Comp. Neurol 195, 391-.[Medline]

Bell, C. C (1989). Sensory coding and corollary discharge effects in mormyrid electric fish. J. Exp. Biol 146, 229-.[Abstract/Free Full Text]

Bell, C. C (1990). Mormyromast electroreceptor organs and theirafferent fibers in mormyrid fish. II. Intra-axonal recordings show initial stages of central processing. J. Neurophysiol 63, 303-.[Abstract/Free Full Text]

Bell, C. C (1990). Mormyromast electroreceptor organs and their afferent fibers in mormyrid fish. III. Physiological differences between two morphological types of fibres. J. Neurophysiol 63, 319-.[Abstract/Free Full Text]

Bell, C. C., Bodznick, D., Montgomery, J. and Bastian, J (1997). The generation and subtraction of sensory expectations within cerebellum-like structures. Brain Behav. Evol 50, 17-.

Bell, C. C., Caputi, A. and Grant, K (1997). Physiology and plasticity of morphologically identified cells in the electrosensory lobe. J. Neurosci 17, 6409-.[Abstract/Free Full Text]

Bell, C. C., Caputi, A., Grant, K. and Serrier, J (1993). Storage of a sensory pattern by anti-Hebbian synaptic plasticity in an electric fish. Proc. Natl. Acad. Sci. USA 90, 4650-.[Abstract/Free Full Text]

Bell, C. C., Finger, T. E. and Russell, C. J (1981). Centralconnections of the posterior lateral line lobe in mormyrid fish. Exp. Brain Res 42, 9-.[Medline]

Bell, C. C. and Grant, K (1989). Corollary discharge inhibition and preservation of temporal information in a sensory nucleus of mormyrid electric fish. J. Neurosci 9, 1029-.[Abstract]

Bell, C. C. and Grant, K (1992). Sensory processing and corollary discharge effects in mormyromast regions of mormyrid electrosensory lobe. II. Cell types and corollary discharge plasticity. J. Neurophysiol 68, 859-.[Abstract/Free Full Text]

Bell, C. C., Grant, K. and Serrier, J (1992). Sensory processing and corollary discharge effects in the mormyromast response of the mormyrid electrosensory lobe. I. Field potentials, cellular activity in associated structures. J. Neurophysiol 68, 843-.[Abstract/Free Full Text]

Bell, C. C., Han, V. Z., Sugawara, S. and Grant, K (1997). Synaptic plasticity in a cerebellum-like structure depends on temporal order. Nature 387, 278-.[Medline]

Bell, C. C., Libouban, S. and Szabo, T (1983). Pathways of the electric organ discharge command and its corollary discharges in mormyrid fish. J. Comp. Neurol 216, 327-.[Medline]

Bell, C. C. and Russell, C. J (1978). Termination of electroreceptor and mechanical lateral line afferents in the mormyrid acousticolateral area. J. Comp. Neurol 182, 367-.[Medline]

Bell, C. C., Zakon, H. and Finger, T. E (1989). Mormyromast electroreceptor organs and their afferent fibers in mormyrid fish. I. Morphology. J. Comp. Neurol 286, 391-.[Medline]

Denizot, J. P., Clausse, S., Elekes, K., Geffard, M., Grant, K., Libouban, S., Ravaille-Veron, M. and Szabo, T (1987). Convergence of electrotonic club endings, GABA-and serotoninergic terminals on second order neurons of the electrosensory pathway in mormyrid fish, Gnathonemus petersii and Brienomyrus niger (Teleostei). Cell Tissue Res 249, 301-.[Medline]

Elekes, K., Ravaille, M., Bell, C. C., Libouban, S. and Szabo, T (1985). The mormyrid brainstem. II. The medullary electromotor relay nucleus: an ultrastructural horseradish peroxidase study. Neurosci 15, 417-.[Medline]

Elekes, K. and Szabo, T (1985). The mormyrid brainstem. III. Ultrastructure and synaptic organization of the medullary pacemaker nucleus. Neurosci 15, 431-.[Medline]

Finger, T. E., Bell, C. C. and Russell, C. J (1981). Electrosensory pathways to the valvula cerebelli in mormyrid fish. Exp. Brain Res 42, 23-.[Medline]

Grant, K., Bell, C. C., Clausse, S. and Ravaille, M (1986). Morphology and physiology of the brainstem nuclei controlling the electric organ discharge in mormyrid fish. J. Comp. Neurol 245, 514-.[Medline]

Grant, K., Clausse, S., Libouban, S. and Szabo, T (1989). Serotoninergic neurons in the mormyrid brain and their projection to the preelectromotor and primary electrosensory centers: immunohistochemical study. J. Comp. Neurol 281, 114-.[Medline]

Grant, K., Meek, J., Sugawara, Y., Veron, M., Denizot, J., Hafmans, T., Serrier, J. and Szabo, T (1996). Projection neurons of the mormyrid electrosensory lateral line lobe: Morphology, immunohistochemistry and synaptology. J. Comp. Neurol 375, 18-.[Medline]

Grant, K., Sugawara, Y., Gomez, L., Han, V. and Bell, C. C (1998). The mormyrid electrosensory lobe in vitro . II. Physiology and pharmacology of cells and circuits. J. Neurosci 18, 6009-.[Abstract/Free Full Text]

Han, V., Bell, C. C., Grant, K. and Sugawara, Y (1999). The mormyrid electrosensory lobe in vitro . I. Morphology of cells and circuits. J. Comp. Neurol 404, 359-.[Medline]

Maler, L (1973). The posterior lateral line lobe of a mormyrid fish. A Golgi study. J. Comp. Neurol 152, 281-.[Medline]

Maler, L., Karten, H. J. and Bennett, M. V. L (1973). The central connections of the posterior lateral line nerve of Gnathonemus petersii. J. Comp. Neurol 151, 57-.[Medline]

Maler, L., Karten, H. J. and Bennett, M. V. L (1973). The central connections of the anterior lateral line nerve of Gnathonemus petersii. J. Comp. Neurol 151, 67-.[Medline]

Meek, J. and Grant, K (1994). The role of motor command feedback in electrosensory processing. Eur. J. Morph 32, 225-.[Medline]

Meek, J., Grant, K., Sugawara, Y., Hafmans, T., Veron, M. and Denizot, J (1996). Interneurons of the ganglionic layer in the mormyrid electrosensory lateral line lobe: Morphology, immunohistochemistry and synaptology. J. Comp. Neurol 375, 43-.[Medline]

Meek, J. and Joosten, H. W. J (1989). The distribution of serotoninin the brain of the mormyrid teleost Gnathonemus petersii. J. Comp. Neurol 281, 206-.[Medline]

Meek, J., Joosten, H. W. J. and Hafmans, T. G. M (1993). Distribution of noradrenaline-immunoreactivity in the brain of the mormyrid teleost Gnathonemus petersii. J. Comp. Neurol 328, 145-.[Medline]

Meek, J., Nieuwenhuys, R. and Elsevier, D (1986). Afferent and efferent connections of cerebellar lobe C3 of the mormyrid fish Gnathonemus petersii . An HRP study. J. Comp. Neurol 245, 342-.[Medline]

Mugnaini, E. and Maler, L (1987). Cytology and immunocytochemistry of the nucleus of the lateral line lobe in the electric fish Gnathonemus petersii (Mormyridae): Evidence suggesting that GABAergic synapses mediate an inhibitory corollary discharge. Synapse 1, 32-.[Medline]

Mugnaini, E. and Maler, L (1987). Cytology and immunocytochemistry of the nucleus extrolateralis anterior of the mormyrid brain: possible role of GABAergic synapses in temporal analysis. Anat. Embryol 176, 313-.[Medline]

Szabo, T., Libouban, S. and Denizot, J.-P (1990). A well defined spinocerebellar system in the weakly electric teleost fish Gnathonemus petersii . A tracing and immunohistochemical study. Arch. Ital. Biol 128, 229-.[Medline]

von der Emde, G. and Bell, C. C (1996). Nucleus preeminentialis of mormyrid fish, a center for recurrent electrosensory feedback. I. Electrosensory and corollary discharge responses. J. Neurophysiol 76, 1581-.[Abstract/Free Full Text]




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This Article
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