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S M Highstein

Showing results (31-40 of 107) with videos related to

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Brain Research|November 14, 1975
Fatigue and recovery of transmission at the Mauthner fiber-giant fiber synapse of the hatchetfishS M Highstein, M V Bennett
Brain Research|July 7, 1978
Relation of interspike baseline activity to the spontaneous discharges of primary afferents from the labyrinth of the toadfish, Opsanus tauS M Highstein, A L Politoff
Experimental Brain Research|January 1, 1990
Visually mediated inhibition of lateral line primary afferent activity by the octavolateralis efferent system during predation in the free-swimming toadfish, Opsanus tauT C Tricas, S M Highstein
The Journal of Comparative Neurology|July 9, 1999
Characteristics of regenerating horizontal semicircular canal afferent and efferent fibers in the toadfish, Opsanus tauA F Mensinger, S M Highstein
Annals of the New York Academy of Sciences|June 19, 1996
Role of the Y group of the vestibular nuclei in motor learning or plasticity of the vestibulo-ocular reflex in the squirrel monkeyA M Partsalis, S M Highstein
Annual Review of Neuroscience|January 1, 1994
The anatomy and physiology of primate neurons that control rapid eye movementsA K Moschovakis, S M Highstein
Annals of the New York Academy of Sciences|January 1, 1981
Is transmission between the vestibular type I hair cell and its primary afferent chemical?D A Schessel, S M Highstein
The Journal of Comparative Neurology|March 20, 1983
The superior vestibular nucleus: an intracellular HRP study in the cat. I. Vestibulo-ocular neuronsA Mitsacos, H Reisine, S M Highstein
Brain Research|July 26, 1974
Monosynaptic projections from the pontine reticular formation to the 3rd nucleus in the catS M Highstein, B Cohen, K Matsunami
The Journal of Comparative Neurology|March 20, 1983
The superior vestibular nucleus: an intracellular HRP study in the cat. II. Non-vestibulo-ocular neuronsA Mitsacos, H Reisine, S M Highstein
Pageof 11

Showing results (31-40 of 107) with videos related to

Sort By:
Pageof 11
Brain Research|November 14, 1975
Fatigue and recovery of transmission at the Mauthner fiber-giant fiber synapse of the hatchetfishS M Highstein, M V Bennett
Brain Research|July 7, 1978
Relation of interspike baseline activity to the spontaneous discharges of primary afferents from the labyrinth of the toadfish, Opsanus tauS M Highstein, A L Politoff
Experimental Brain Research|January 1, 1990
Visually mediated inhibition of lateral line primary afferent activity by the octavolateralis efferent system during predation in the free-swimming toadfish, Opsanus tauT C Tricas, S M Highstein
The Journal of Comparative Neurology|July 9, 1999
Characteristics of regenerating horizontal semicircular canal afferent and efferent fibers in the toadfish, Opsanus tauA F Mensinger, S M Highstein
Annals of the New York Academy of Sciences|June 19, 1996
Role of the Y group of the vestibular nuclei in motor learning or plasticity of the vestibulo-ocular reflex in the squirrel monkeyA M Partsalis, S M Highstein
Annual Review of Neuroscience|January 1, 1994
The anatomy and physiology of primate neurons that control rapid eye movementsA K Moschovakis, S M Highstein
Annals of the New York Academy of Sciences|January 1, 1981
Is transmission between the vestibular type I hair cell and its primary afferent chemical?D A Schessel, S M Highstein
The Journal of Comparative Neurology|March 20, 1983
The superior vestibular nucleus: an intracellular HRP study in the cat. I. Vestibulo-ocular neuronsA Mitsacos, H Reisine, S M Highstein
Brain Research|July 26, 1974
Monosynaptic projections from the pontine reticular formation to the 3rd nucleus in the catS M Highstein, B Cohen, K Matsunami
The Journal of Comparative Neurology|March 20, 1983
The superior vestibular nucleus: an intracellular HRP study in the cat. II. Non-vestibulo-ocular neuronsA Mitsacos, H Reisine, S M Highstein
Pageof 11