Susan B. Udin

Affiliations: 
State University of New York, Buffalo, Buffalo, NY, United States 
Area:
visual system, development, NMDA receptors, acetylcholine
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"Susan Udin"
Mean distance: 15.53 (cluster 17)
 

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Warren J. Scherer grad student 1987-1991 SUNY Buffalo
Yujin Guo grad student 2000 SUNY Buffalo
Claudia Prada grad student 2005 SUNY Buffalo
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Publications

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Personius KE, Slusher BS, Udin SB. (2016) Neuromuscular NMDA Receptors Modulate Developmental Synapse Elimination. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 36: 8783-9
Udin SB. (2012) Binocular maps in Xenopus tectum: Visual experience and the development of isthmotectal topography. Developmental Neurobiology. 72: 564-74
Banerjee A, Meenakumari KJ, Udin S, et al. (2009) Melatonin regulates delayed embryonic development in the short-nosed fruit bat, Cynopterus sphinx. Reproduction (Cambridge, England). 138: 935-44
Udin SB. (2008) Isthmotectal axons maintain normal arbor size but fail to support normal branch numbers in dark-reared Xenopus laevis. The Journal of Comparative Neurology. 507: 1559-70
Udin SB. (2007) The instructive role of binocular vision in the Xenopus tectum. Biological Cybernetics. 97: 493-503
Gruberg E, Dudkin E, Wang Y, et al. (2006) Influencing and interpreting visual input: the role of a visual feedback system. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 26: 10368-71
Rybicka KK, Udin SB. (2005) Connections of contralaterally projecting isthmotectal axons and GABA-immunoreactive neurons in Xenopus tectum: an ultrastructural study. Visual Neuroscience. 22: 305-15
Prada C, Udin SB. (2005) Melatonin decreases calcium levels in retinotectal axons of Xenopus laevis by indirect activation of group III metabotropic glutamate receptors. Brain Research. 1053: 67-76
Udin SB. (2005) Chronic melatonin and binocular plasticity in Xenopus frogs. General and Comparative Endocrinology. 142: 274-9
Prada C, Udin SB, Wiechmann AF, et al. (2005) Stimulation of melatonin receptors decreases calcium levels in xenopus tectal cells by activating GABA(C) receptors. Journal of Neurophysiology. 94: 968-78
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