Spontaneous Activity of Morphologically Identified Ganglion Cells in the Developing Ferret Retina
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Summary
Observations suggest that a common mechanism underlies the bursting patterns exhibited by all ganglion cell classes, and that class-specific firing patterns emerge coincident with retinal ganglions cell morphological differentiation.
- Type
- article
- Published
- 2003-08-13
- Cited by
- 24
- References
- 49
- Access
- Open access
- OpenAlex
- https://openalex.org/W1961491435
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:18156531
Keywords
Parasol cell, Bistratified cell, Giant retinal ganglion cells, Ganglion, Retinal waves
References
- Early functional neural networks in the developing retina
- The visual neurosciences
- Mice Lacking Specific Nicotinic Acetylcholine Receptor Subunits Exhibit Dramatically Altered Spontaneous Activity Patterns and Reveal a Limited Role for Retinal Waves in Forming ON and OFF Circuits in the Inner Retina
- Diverse receptive fields in the lateral geniculate nucleus during thalamocortical development
- Developmentally Regulated Spontaneous Activity in the Embryonic Chick Retina
- On and off sublaminae in the lateral geniculate nucleus of the ferret
- Morphology of physiologically identified retinogeniculate X- and Y-axons in the cat.
- Dendritic growth and remodeling of cat retinal ganglion cells during fetal and postnatal development
- Direct Participation of Starburst Amacrine Cells in Spontaneous Rhythmic Activities in the Developing Mammalian Retina
- Histogenesis of the ferret retina.
- Maturation of function in the developing rabbit retina
- Correlation in the discharges of neighboring rat retinal ganglion cells during prenatal life.
- Parallel Circuits from Cones to the On‐Beta Ganglion Cell
- Axonal Target Choice and Dendritic Development of Ferret Beta Retinal Ganglion Cells
- Blockade of afferent impulse activity disrupts on/off sublamination in the ferret lateral geniculate nucleus.
- Soma and axon diameter distributions and central projections of ferret retinal ganglion cells
- Birthdates of neurons in the retinal ganglion cell layer of the ferret
- Segregation of ON and OFF retinogeniculate connectivity directed by patterned spontaneous activity.
- The development of the retinogeniculate pathways in normal and albino ferrets
- Spontaneous Ca2+ transients and their transmission in the developing chick retina.
Cited by
- Reference values for selected ophthalmic diagnostic tests of the ferret (Mustela putorius furo).
- Control of interneurone firing pattern by axonal autoreceptors in the juvenile rat cerebellum
- Properties of mouse retinal ganglion cell dendritic growth during postnatal development
- Intrinsic physiological properties of rat retinal ganglion cells with a comparative analysis.
- The development of intrinsic excitability in mouse retinal ganglion cells
- Establishment of a Scaffold for Orientation Maps in Primary Visual Cortex of Higher Mammals
- Development of On and Off retinal pathways and retinogeniculate projections.
- The Developmental Remodeling of Eye-Specific Afferents in the Ferret Dorsal Lateral Geniculate Nucleus
- The effects of histamine on rat and monkey retinal ganglion cells
- Modulation of neuronal excitability by intracellular calcium buffering: from spiking to bursting.
- Epibatidine application in vitro blocks retinal waves without silencing all retinal ganglion cell action potentials in developing retina of the mouse and ferret.
- Developmental Origin of Patchy Axonal Connectivity in the Neocortex: A Computational Model
- Intersecting Circuits Generate Precisely Patterned Retinal Waves
- Eye-specific retinogeniculate segregation proceeds normally following disruption of patterned spontaneous retinal activity
- Mechanisms underlying development of visual maps and receptive fields.
- Self-construction and -configuration of functional neuronal networks
- Compressed Sensing Beyond the IID and Static Domains: Theory, Algorithms and Applications
- Robust Estimation of Self-Exciting Generalized Linear Models With Application to Neuronal Modeling
- Spontaneous retinal waves generate long-range horizontal connectivity in visual cortex
- Spontaneous Retinal Waves Can Generate Long-Range Horizontal Connectivity in Visual Cortex
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