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Brain Research|February 24, 1987
The role of compensatory eye and head movements for gaze stabilization in the unrestrained frogN DieringerProgress in Neurobiology|June 1, 1995
'Vestibular compensation': neural plasticity and its relations to functional recovery after labyrinthine lesions in frogs and other vertebratesN DieringerBiological Cybernetics|January 1, 1994
Abducens nerve responses of the frog during horizontal linear acceleration: data and modelK Wadan, N DieringerExperimental Brain Research|January 1, 1982
Compensatory head and eye movements in the frog and their contribution to stabilization of gazeN Dieringer, W PrechtExperimental Brain Research|July 2, 1979
Mechanisms of compensation for vestibular deficits in the frog. I. Modification of the excitatory commissural systemN Dieringer, W PrechtThe Journal of Comparative Neurology|November 22, 1994
Size-related colocalization of glycine and glutamate immunoreactivity in frog and rat vestibular afferentsI Reichenberger, N DieringerExperimental Brain Research|January 1, 1988
Lesion-induced vestibular plasticity in the frog: are N-methyl-D-aspartate receptors involved?T Knöpfel, N DieringerJournal of Neurophysiology|January 11, 2002
Principles of linear and angular vestibuloocular reflex organization in the frogM Rohregger, N DieringerExperimental Brain Research|July 2, 1979
Mechanisms of compensation for vestibular deficits in the frog. II. Modification of the inhibitory PathwaysN Dieringer, W PrechtJournal of Comparative Physiology. A, Sensory, Neural, and Behavioral Physiology|April 8, 1998
Spatial transformation of semicircular canal signals into abducens motor signals. A comparison between grass frogs and water frogsC Pantle, N DieringerPageof 7