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Journal of Comparative Physiology. A, Sensory, Neural, and Behavioral Physiology|July 1, 1990
Medullary electrosensory processing in the little skate. II. Suppression of self-generated electrosensory interference during respirationJ G New, D BodznickBrain, Behavior and Evolution|January 1, 1987
Afferent and efferent connections of the vestibulolateral cerebellum of the little skate, Raja erinaceaA W Schmidt, D BodznickJournal of Comparative Physiology. A, Sensory, Neural, and Behavioral Physiology|June 1, 1994
The cerebellar dorsal granular ridge in an elasmobranch has proprioceptive and electroreceptive representations and projects homotopically to the medullary electrosensory nucleusR A Conley, D BodznickThe Journal of Experimental Biology|July 20, 2010
The importance of N-methyl-D-aspartate (NMDA) receptors in subtraction of electrosensory reafference in the dorsal nucleus of skatesZhi Zhang, David BodznickThe Journal of Experimental Biology|November 18, 2008
Plasticity in a cerebellar-like structure: suppressing reafference during episodic behaviorsZhi Zhang, David BodznickJournal of Comparative Physiology. A, Sensory, Neural, and Behavioral Physiology|January 1, 1986
End buds: non-ampullary electroreceptors in adult lampreysM C Ronan, D BodznickThe Journal of Comparative Neurology|June 1, 1984
Somatotopy within the medullary electrosensory nucleus of the little skate, Raja erinaceaD Bodznick, A W SchmidtBrain Research|June 10, 1985
Segregation of electroreceptive and mechanoreceptive lateral line afferents in the hindbrain of chondrostean fishesJ G New, D BodznickZoological Letters|November 21, 2018
Morphological development of the dorsal hindbrain in an elasmobranch fish (<i>Leucoraja erinacea</i>)Christos Michael Suriano, David BodznickScience (New York, N.Y.)|April 24, 1981
Electroreception in lampreys: evidence that the earliest vertebrates were electroreceptiveD Bodznick, R G NorthcuttPageof 3