Published in J Physiol on August 01, 1975
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Laminar differences in receptive field properties of cells in cat primary visual cortex. J Physiol (1977) 3.01
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The neural representation of speed in macaque area MT/V5. J Neurosci (2003) 1.67
Inhibitory processes underlying the directional specificity of simple, complex and hypercomplex cells in the cat's visual cortex. J Physiol (1977) 1.45
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Response to the velocity of moving visual stimuli of the brisk classes of ganglion cells in the cat retina. J Physiol (1983) 0.90
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The mechanism of directionally selective units in rabbit's retina. J Physiol (1965) 5.79
Sustained and transient neurones in the cat's retina and lateral geniculate nucleus. J Physiol (1971) 5.65
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The neural mechanism of binocular depth discrimination. J Physiol (1967) 4.66
Another tungsten microelectrode. Med Biol Eng (1972) 3.71
The spatial selectivity of the visual cells of the cat. J Physiol (1969) 2.80
Lateral inhibition between orientation detectors in the cat's visual cortex. Exp Brain Res (1972) 2.80
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The angular selectivity of visual cortical cells to moving gratings. J Physiol (1968) 2.17
Responses to moving slits by single units in cat striate cortex. Exp Brain Res (1968) 2.16
Binocular interaction on single units in cat striate cortex: simultaneous stimulation by single moving slit with receptive fields in correspondence. Exp Brain Res (1968) 2.13
The analysis of image motion by the rabbit retina. J Physiol (1968) 2.02
Conduction velocity of afferents to cat visual cortex: a correlation with cortical receptive field properties. Brain Res (1971) 1.92
Visual receptive fields of single striate corical units projecting to the superior colliculus in the cat. Brain Res (1974) 1.74
Relay of receptive-field properties in dorsal lateral geniculate nucleus of the cat. J Neurophysiol (1972) 1.71
Cell structure and function in the visual cortex of the cat. J Physiol (1974) 1.66
Projection of X- and Y-cells of the cat's lateral geniculate nucleus to areas 17 and 18 of visual cortex. J Neurophysiol (1973) 1.57
An experimental study of the termination of the lateral geniculo-cortical pathway in the cat and monkey. Proc R Soc Lond B Biol Sci (1971) 1.50
Functional synaptic organization of primary visual cortex neurones in the cat. Exp Brain Res (1968) 1.46
Postsynaptic potentials in the cat's visual cortex following electrical stimulation of afferent pathways. Exp Brain Res (1966) 1.33
An analysis of orientation selectivity in the cat's visual cortex. Exp Brain Res (1974) 1.32
Reciprocal lateral inhibition of on- and off-center neurones in the lateral geniculate body of the cat. Exp Brain Res (1970) 1.31
An intracellular analysis of visual cortical neurones to moving stimuli: response in a co-operative neuronal network. Exp Brain Res (1974) 1.27
Inhibitory interaction between X and Y units in the cat lateral geniculate nucleus. Brain Res (1973) 1.21
Hypercomplex cells in the cat's striate cortex. Invest Ophthalmol (1972) 1.15
Inhibitory interaction in the cat's lateral geniculate nucleus. Exp Brain Res (1972) 1.14
Receptive field analysis: responses to moving visual contours by single lateral geniculate neurones in the cat. J Physiol (1973) 1.14
Post-synaptic inhibitory components of the responses to moving stimuli in area 17. Brain Res (1974) 1.06
Morphology and physiology of the geniculocortical synapse in the cat: the question of parallel input to the striate cortex. Invest Ophthalmol (1972) 1.02
Evidence for "sustained" and "transient" neurones in the cat's visual cortex. Vision Res (1974) 0.95
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The analysis of the drift rate of moving sinusoidal gratings. Vision Res (1973) 0.85
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The analysis of visual motion: a comparison of neuronal and psychophysical performance. J Neurosci (1992) 9.58
A relationship between behavioral choice and the visual responses of neurons in macaque MT. Vis Neurosci (1996) 6.05
A computational analysis of the relationship between neuronal and behavioral responses to visual motion. J Neurosci (1996) 5.52
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Spatial summation in the receptive fields of simple cells in the cat's striate cortex. J Physiol (1978) 3.52
Responses of neurons in macaque MT to stochastic motion signals. Vis Neurosci (1994) 3.32
Classifying simple and complex cells on the basis of response modulation. Vision Res (1991) 3.13
Spatial and temporal contrast sensitivity of neurones in areas 17 and 18 of the cat's visual cortex. J Physiol (1978) 2.86
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Receptive field organization of complex cells in the cat's striate cortex. J Physiol (1978) 2.49
Synchrony unbound: a critical evaluation of the temporal binding hypothesis. Neuron (1999) 2.34
Visual motion analysis for pursuit eye movements in area MT of macaque monkeys. J Neurosci (1999) 2.32
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Neuronal correlates of amblyopia in the visual cortex of macaque monkeys with experimental strabismus and anisometropia. J Neurosci (1998) 1.55
The dependence of response amplitude and variance of cat visual cortical neurones on stimulus contrast. Exp Brain Res (1981) 1.54
Reversal of the physiological effects of monocular deprivation in the kitten's visual cortex. J Physiol (1976) 1.40
Effects of early unilateral blur on the macaque's visual system. III. Physiological observations. J Neurosci (1987) 1.37
Spatial and temporal contrast sensitivity of striate cortical neurones. Nature (1975) 1.36
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Spike train encoding by regular-spiking cells of the visual cortex. J Neurophysiol (1996) 1.13
Functional organization of owl monkey lateral geniculate nucleus and visual cortex. J Neurophysiol (1998) 1.11
Processing of first- and second-order motion signals by neurons in area MT of the macaque monkey. Vis Neurosci (1998) 1.11
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Effects of brief periods of unilateral eye closure on the kitten's visual system. J Neurophysiol (1977) 1.01
Effects of early-onset artificial strabismus on pursuit eye movements and on neuronal responses in area MT of macaque monkeys. J Neurosci (1996) 1.00
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Cortical oscillatory responses do not affect visual segmentation. Vision Res (1996) 0.88
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Contrast sensitivity and vernier acuity in amblyopic monkeys. Vision Res (1993) 0.87
Reversal of the behavioural effects of monocular deprivation in the kitten. J Physiol (1976) 0.86
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Abolition of visual cortical direction selectivity affects visual behavior in cats. Exp Brain Res (1985) 0.80
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Evidence that nitrous oxide can maintain anaesthesia after induction with barbiturates. J Physiol (1974) 0.78
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Length summation in simple cells of cat striate cortex. Vision Res (1984) 0.76
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