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Journal of Neurophysiology

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Target Selection for Saccadic Eye Movements: Direction-Selective Visual Responses in the Superior Colliculus

Gregory D. Horwitz, William T. Newsome
Journal of Neurophysiology Published 1 November 2001 Vol. 86 no. 5, 2527-2542 DOI:
Gregory D. Horwitz
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William T. Newsome
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Article Information

vol. 86 no. 5 2527-2542
PubMed 
11698540
Published By 
American Physiological Society
Print ISSN 
0022-3077
Online ISSN 
1522-1598
History 
  • Submitted July 14, 2000
  • accepted in final form April 13, 2001
Copyright & Usage 
Copyright © 2001 The American Physiological Society

Author Information

  1. Gregory D. Horwitz and
  2. William T. Newsome
  1. 1 Howard Hughes Medical Institute and Department of Neurobiology, Stanford University School of Medicine, Stanford, California 94305
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Cover: Presence of sodium voltage-gated channel isoform 1.6 (NaV1.6) at the heminode and sensory terminals of a Ia afferent branch supplying innervation to a cat muscle spindle stained with antibodies targeting neurofilament H (green) and NaV1.6 (red). In the lower left corner are action potentials and instantaneous firing rates evoked by ramp-hold-release stretches recorded from a cat Ia afferent. From Carrasco DI, Vincent JA, Cope TC. Distribution of TTX-sensitive voltage-gated sodium channels in primary sensory endings of mammalian muscle spindles. J Neurophysiol 117: 1690–1701, 2017; doi:10.1152/jn.00889.2016.

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Target Selection for Saccadic Eye Movements: Direction-Selective Visual Responses in the Superior Colliculus
Gregory D. Horwitz, William T. Newsome
Journal of Neurophysiology Nov 2001, 86 (5) 2527-2542;

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Target Selection for Saccadic Eye Movements: Direction-Selective Visual Responses in the Superior Colliculus
Gregory D. Horwitz, William T. Newsome
Journal of Neurophysiology Nov 2001, 86 (5) 2527-2542;
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Copyright © 2017 The American Physiological Society | Print ISSN: 0022-3077 | Online ISSN: 1522-1598