Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Research Project (R01)
Project #
5R01EY004050-14
Application #
2158976
Study Section
Visual Sciences B Study Section (VISB)
Project Start
1982-07-01
Project End
1997-06-30
Budget Start
1995-07-01
Budget End
1997-06-30
Support Year
14
Fiscal Year
1995
Total Cost
Indirect Cost
Name
University of Oregon
Department
Neurosciences
Type
Other Domestic Higher Education
DUNS #
948117312
City
Eugene
State
OR
Country
United States
Zip Code
97403
Cao, Zhiping; Liu, Lijuan; Lickey, Marvin et al. (2007) Virally mediated knock-down of NR2 subunits ipsilateral to the deprived eye blocks ocular dominance plasticity. Exp Brain Res 177:64-77
Cao, Z; Liu, L; Lickey, M et al. (2000) Development of NR1, NR2A and NR2B mRNA in NR1 immunoreactive cells of rat visual cortex. Brain Res 868:296-305
Cao, Z; Lickey, M E; Liu, L et al. (2000) Postnatal development of NR1, NR2A and NR2B immunoreactivity in the visual cortex of the rat. Brain Res 859:26-37
Daw, N W; Gordon, B; Fox, K D et al. (1999) Injection of MK-801 affects ocular dominance shifts more than visual activity. J Neurophysiol 81:204-15
Gordon, B; Kinch, G; Kato, N et al. (1997) Development of MK-801, kainate, AMPA, and muscimol binding sites and the effect of dark rearing in rat visual cortex. J Comp Neurol 383:73-81
Gordon, B; Pardo, D; Conant, K (1996) Laminar distribution of MK-801, kainate, AMPA, and muscimol binding sites in cat visual cortex: a developmental study. J Comp Neurol 365:466-78
Tseng, Y L; Tovar, K; Gordon, B (1995) Transneuronal WGA-HRP: can it demonstrate development of ocular dominance patches and effects of monocular deprivation? J Neurosci Methods 61:119-26
Gordon, B; BreMiller, R (1992) Decreasing the cortical response to monocular deprivation need not decrease cell shrinkage in cat lateral geniculate nucleus. Exp Brain Res 92:79-84
Gordon, B; Daw, N; Parkinson, D (1991) The effect of age on binding of MK-801 in the cat visual cortex. Brain Res Dev Brain Res 62:61-7
Gordon, B; Mitchell, B; Mohtadi, K et al. (1990) Lesions of nonvisual inputs affect plasticity, norepinephrine content, and acetylcholine content of visual cortex. J Neurophysiol 64:1851-60

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