Central core control of developmental plasticity in the kitten visual cortex: II. Electrical activation of mesencephalic and diencephalic projections
Explore this paper's citation graph
Summary
It is concluded that central core projections which modulate cortical excitability gate experience-dependent modifications of connections in the kitten visual cortex are responsible for ocular dominance changes.
- Type
- article
- Published
- 2004-01-01
- Cited by
- 33
- References
- 36
- OpenAlex
- https://openalex.org/W1970760075
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:24676632
Keywords
Kitten, Neuroscience, Stimulation, Visual cortex, Thalamus
References
- Requirements for the disruption of binocularity in the visual cortex of strabismic kittens.
- The neurosciences : fourth study program
- Extraretinal influences on the lateral geniculate nucleus.
- RECEPTIVE FIELDS OF CELLS IN STRIATE CORTEX OF VERY YOUNG, VISUALLY INEXPERIENCED KITTENS.
- Cat parastriate cortex: a primary or secondary visual area.
- Preservation of binocularity after monocular deprivation in the striate cortex of kittens treated with 6‐Hydroxydopamine
- Brief monocular visual experience and kitten cortical binocularity.
- Depletion of brain catecholamines: failure of ocular dominance shift after monocular occlusion in kittens.
- Central gating of developmental plasticity in kitten visual cortex
- Ocular dominance in kitten cortex: Induced changes of single cells while they are recorded
- Neural plasticity in visual cortex of adult cats after exposure to visual patterns.
- Effects of monocular deprivation on excitatory and inhibitory pathways in cat striate cortex
- Development of visual cortical orientation specificity after dark-rearing: role of extraocular proprioception.
- Cortical plasticity in monocularly deprived immobilized kittens depends on eye movement.
- The effect of reticular stimulation on spontaneous and evoked activity in the cat visual cortex.
- Restoration of visual cortical plasticity by local microperfusion of norepinephrine
- Visual cortical cells: their developmental properties in normal and dark reared kittens.
- Synaptic action of specific visual inpulses upon cat's parastriate cortex.
- Changes in the circuitry of the kitten visual cortex are gated by postsynaptic activity
- The effect of mesencephalic reticular stimulation on intracellular potentials of cat lateral geniculate neurons.
Cited by
- Thalamic units firing upon refixation may be responsible for plasticity in visual cortex
- Cortical map plasticity in animals and humans.
- Doses of 6-hydroxydopamine sufficient to deplete norepinephrine are not sufficient to decrease plasticity in the visual cortex
- A Neural Circuit That Controls Cortical State, Plasticity, and the Gain of Sensory Responses in Mouse
- Physiological effects of sustained blockade of excitatory synaptic transmission on spontaneously active developing neuronal networks--an inquiry into the reciprocal linkage between intrinsic biorhythms and neuroplasticity in early ontogeny.
- A developmental study of retinal afferents and visual responses in the cat pretectum
- Rapid eye movement sleep deprivation modifies expression of long-term potentiation in visual cortex of immature rats.
- Developmental changes of the distribution of binding sites for organic Ca2+-channel blockers in cat visual cortex
- Development of the kitten visual cortex depends on the relationship between the plane of eye movements and visual inputs
- Spikes, synchrony, and attentive learning by laminar thalamocortical circuits.
- Proprioceptive signals from extraocular muscles gate experience-dependent modifications of receptive fields in the kitten visual cortex
- Recovery of binocular responses after brief monocular deprivation in kittens
- Physiology of higher nervous activity: Prospects of its development
- Ocular dominance plasticity restored by NA infusion to aplastic visual cortex of anesthetized and paralyzed kittens
- Reticular facilitation of cat visual cortical responses is mediated by nicotinic and muscarinic cholinergic mechanisms
- The brain as a self-organizing system
- Neurophysiological mechanisms of cortical-subcortical interactions in the organization of behavior
- Central core control of developmental plasticity in the kitten visual cortex: I. Diencephalic lesions
- Modeling perceptual learning with multiple interacting elements: A neural network model describing early visual perceptual learning
- A model for generalization and specification by single neurons
Related papers
- Reversal of the physiological effects of monocular deprivation in kittens: further evidence for a sensitive period
- Binocular deprivation can erase the effects of preceding monocular or binocular vision in kitten cortex.
- Lithium reduces ocular dominance plasticity in kitten visual cortex.
- Reversal of the physiological effects of monocular deprivation in the kitten's visual cortex.
- Enhanced binocular interaction in the visual cortex of normal kittens subjected to intracortical norepinephrine perfusion.
- Recovery of ocular dominance plasticity in kitten visual cortex infused with a β adremoreceptor antagonist
- Evidence for a threshold in experience-dependent long-term changes of kitten visual cortex.
- Increased levels of testosterone have little effect on visual cortex plasticity in the kitten.
- Gliotoxin-induced suppression of ocular dominance plasticity in kitten visual cortex.
- Profile of the sensitive period for monocular deprivation in kittens