Formation of precise connections in the olfactory bulb occurs in the absence of odorant-evoked neuronal activity.
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Summary
It is demonstrated that olfactory sensory axons converge normally in the CNG channel mutant background and that the pruning of mitral cell dendrites, although slowed during development, is ultimately unperturbed in mutant animals.
- Type
- article
- Published
- 2000-04-01
- Cited by
- 203
- References
- 66
- Access
- Open access
- OpenAlex
- https://openalex.org/W2013307433
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:17940976
Keywords
Olfactory bulb, Neuroscience, Olfactory system, Sensory system, Biology
References
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- Blockade of Glutamate-Mediated Activity in the Developing Retina Perturbs the Functional Segregation of ON and OFF Pathways
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- Synaptic Activity and the Construction of Cortical Circuits
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- Plasticity of ocular dominance columns in monkey striate cortex.
- Noncoordinate expression of odorant receptor genes tightly linked in the zebrafish genome.
- Membrane and synaptic properties of identified neurons in the olfactory bulb
Cited by
- Does the Brain Connect Before the Periphery Can Direct? A Comparison of Three Sensory Systems in Mice
- Functional improvement of dystrophic muscle by myostatin blockade
- Odorant ReceptorDerived cAMP Signals Direct Axonal Targeting
- A G protein/cAMP signal cascade is required for axonal convergence into olfactory glomeruli
- Dendritic neurotransmitter release and its modulation in accessory olfactory bulb circuits
- Analysis of functional circuitry and the effect of activity across development in the mouse accessory olfactory system
- Role of the broadly expressed olfactory receptor OlfCc1 in mediating amino acid detection in zebrafish
- Mechanisms of deprivation-induced map plasticity at layer 4 to layer 2/3 synapses in rat barrel cortex :
- The roles of EMX2 in odorant receptor gene expression and olfactory sensory neuron axon growth
- Persistent and specific influences of early acoustic environments on primary auditory cortex
- Axon Growth and Guidance Genes Identify Nascent, Immature, and Mature Olfactory Sensory Neurons
- Synaptic activity and the formation and maintenance of neuronal circuits
- Electrical activity and development of neural circuits
- Developmental regulation of neural map formation in the mouse olfactory system
- Odorant receptor gene choice and axonal projection in the mouse olfactory system.
- How smell develops
- Development of Columnar Topography in the Excitatory Layer 4 to Layer 2/3 Projection in Rat Barrel Cortex
- The first mutation in CNGA2 in two brothers with anosmia
- Hyperpolarisation‐activated cyclic nucleotide‐gated channels regulate the spontaneous firing rate of olfactory receptor neurons and affect glomerular formation in mice
- Olfactometry with Mice
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