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R Sireteanu
W Singer

Experimental brain research

Showing results (1-10 of 39) with videos related to

Pageof 4
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Experimental Brain Research|January 1, 1980
The "vertical effect" in human squint amblyopiaR Sireteanu, W Singer
Experimental Brain Research|January 1, 1990
Human amblyopia: structure of the visual fieldR Sireteanu, M Fronius
Experimental Brain Research|February 15, 1979
Relative frequency and visual resolution of X- and Y-cells in the LGN of normal and monocularly deprived cats: interlaminar differencesR Sireteanu, K P Hoffmann
Experimental Brain Research|October 24, 1977
Effects of monocular deprivation on excitatory and inhibitory pathways in cat striate cortexW Singer
Experimental Brain Research|January 1, 1981
Topographic organization of orientation columns in the cat visual cortex. A deoxyglucose studyW Singer
Experimental Brain Research|January 1, 1982
Central core control of developmental plasticity in the kitten visual cortex: I. Diencephalic lesionsW Singer
Experimental Brain Research|January 1, 1992
Otto Detlev Creutzfeldt, 1927-1992W Singer
Experimental Brain Research|January 1, 1991
The effect of short periods of monocular deprivation on excitatory transmission in the striate cortex of kittens: a current source density analysisM Kossut, W Singer
Experimental Brain Research|November 15, 1978
Prominent excitatory pathways in the cat visual cortex (A 17 and A 18): a current source density analysis of electrically evoked potentialsU Mitzdorf, W Singer
Experimental Brain Research|September 24, 1976
Unusually large receptive fields in cats with restricted visual experienceW Singer, F Tretter
Pageof 4

Showing results (1-10 of 39) with videos related to

Sort By:
Pageof 4
Experimental Brain Research|January 1, 1980
The "vertical effect" in human squint amblyopiaR Sireteanu, W Singer
Experimental Brain Research|January 1, 1990
Human amblyopia: structure of the visual fieldR Sireteanu, M Fronius
Experimental Brain Research|February 15, 1979
Relative frequency and visual resolution of X- and Y-cells in the LGN of normal and monocularly deprived cats: interlaminar differencesR Sireteanu, K P Hoffmann
Experimental Brain Research|October 24, 1977
Effects of monocular deprivation on excitatory and inhibitory pathways in cat striate cortexW Singer
Experimental Brain Research|January 1, 1981
Topographic organization of orientation columns in the cat visual cortex. A deoxyglucose studyW Singer
Experimental Brain Research|January 1, 1982
Central core control of developmental plasticity in the kitten visual cortex: I. Diencephalic lesionsW Singer
Experimental Brain Research|January 1, 1992
Otto Detlev Creutzfeldt, 1927-1992W Singer
Experimental Brain Research|January 1, 1991
The effect of short periods of monocular deprivation on excitatory transmission in the striate cortex of kittens: a current source density analysisM Kossut, W Singer
Experimental Brain Research|November 15, 1978
Prominent excitatory pathways in the cat visual cortex (A 17 and A 18): a current source density analysis of electrically evoked potentialsU Mitzdorf, W Singer
Experimental Brain Research|September 24, 1976
Unusually large receptive fields in cats with restricted visual experienceW Singer, F Tretter
Pageof 4