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Journal of Neurophysiology|July 19, 2000
Expansion of afferent vestibular signals after the section of one of the vestibular nerve branchesF Goto, H Straka, N DieringerJournal of Neurophysiology|October 6, 1997
Canal-specific excitation and inhibition of frog second-order vestibular neuronsH Straka, S Biesdorf, N DieringerJournal of Neurophysiology|June 2, 2001
Postlesional vestibular reorganization in frogs: evidence for a basic reaction pattern after nerve injuryF Goto, H Straka, N DieringerNeuroscience|February 1, 1996
Size-related properties of vestibular afferent fibers in the frog: uptake of and immunoreactivity for glycine and aspartate/glutamateH Straka, I Reichengerger, N DieringerNeuroscience|February 1, 1996
Size-related properties of vestibular afferent fibers in the frog: differential synaptic activation of N-methyl-D-aspartate and non-N-methyl-D-aspartate receptorsH Straka, K Debler, N DieringerEuropean Journal of Morphology|August 1, 1994
Plasticity in vestibular and spinal circuits after hemilabyrinthectomy in the frogH Straka, A W Kunkel, N DieringerBrain Research|November 27, 2001
Location of dye-coupled second order and of efferent vestibular neurons labeled from individual semicircular canal or otolith organs in the frogA Birinyi, H Straka, C Matesz, et al.Acta Biologica Hungarica|January 1, 1996
The synaptic organization of the horizontal vestibulo-ocular reflex in the frogN Dieringer, C Pantle, I Reichenberger, et al.The Journal of Comparative Neurology|January 13, 1997
Distribution of GABA, glycine, and glutamate immunoreactivities in the vestibular nuclear complex of the frogI Reichenberger, H Straka, O P Ottersen, et al.Die Naturwissenschaften|June 1, 1986
[Comparative neurobiology of the organization of gaze-stabilizing reflex systems in vertebrates]N DieringerPageof 7