Pages that link to "Q59084296"
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The following pages link to Order in the initial retinotectal map in Xenopus: a new technique for labelling growing nerve fibres (Q59084296):
Displayed 50 items.
- Visual Activity Regulates Neural Progenitor Cells in Developing Xenopus CNS through Musashi1 (Q24626523) (← links)
- Glutamatergic Retinal Waves (Q26744744) (← links)
- An Evolutionarily Conserved Mechanism for Activity-Dependent Visual Circuit Development (Q28076224) (← links)
- Visual deprivation increases accumulation of dense core vesicles in developing optic tectal synapses in Xenopus laevis (Q30431904) (← links)
- Retinotopic mapping requires focal adhesion kinase-mediated regulation of growth cone adhesion. (Q30437621) (← links)
- Neurodevelopmental effects of chronic exposure to elevated levels of pro-inflammatory cytokines in a developing visual system (Q30493065) (← links)
- Subcellular topography of visually driven dendritic activity in the vertebrate visual system (Q30495148) (← links)
- Vision drives correlated activity without patterned spontaneous activity in developing Xenopus retina (Q30503531) (← links)
- Regenerating optic fibers correct large-scale errors by random growth: evidence from in vivo imaging (Q30666660) (← links)
- Topological specificity in reinnervation of the superior colliculus by regenerated retinal ganglion cell axons in adult hamsters. (Q31826791) (← links)
- Topographic mapping in dorsoventral axis of the Xenopus retinotectal system depends on signaling through ephrin-B ligands (Q33960688) (← links)
- Control of motor axon guidance in the zebrafish embryo (Q34134037) (← links)
- Control of retinal growth and axon divergence at the chiasm: lessons from Xenopus. (Q34194543) (← links)
- The physiology of developmental changes in BOLD functional imaging signals. (Q34205139) (← links)
- Earliest sensory nerve fibres are guided to peripheral targets by attractants other than nerve growth factor (Q34265609) (← links)
- Retinoic acid synthesis and breakdown in the developing mouse retina (Q34290584) (← links)
- Roger Sperry and his chemoaffinity hypothesis (Q34482674) (← links)
- In vivo spike-timing-dependent plasticity in the optic tectum of Xenopus laevis (Q34689904) (← links)
- RNA-binding protein Hermes/RBPMS inversely affects synapse density and axon arbor formation in retinal ganglion cells in vivo (Q36154697) (← links)
- Multivariate analysis of electrophysiological diversity of Xenopus visual neurons during development and plasticity (Q36506006) (← links)
- Optic synapses are found in diencephalic neuropils before development of the tectum in Xenopus (Q36776383) (← links)
- Similarities between angiogenesis and neural development: what small animal models can tell us. (Q36976443) (← links)
- N-methyl-D-aspartate receptor antagonists disrupt the formation of a mammalian neural map. (Q37288982) (← links)
- Rab5 and Rab4 regulate axon elongation in the Xenopus visual system. (Q37409980) (← links)
- Early visual deprivation results in a degraded motor map in the optic tectum of barn owls (Q37486827) (← links)
- Dynamics of axonal growth and the formation of orderly nerve connections in the fish retinotectal system (Q37790490) (← links)
- Role of emergent neural activity in visual map development (Q38184809) (← links)
- Engrailed homeoproteins in visual system development (Q38272495) (← links)
- Engrailed, retinotectal targeting, and axonal patterning in the midbrain during Xenopus development: an antisense study (Q38287460) (← links)
- Rules for Shaping Neural Connections in the Developing Brain (Q39101813) (← links)
- Experience-dependent plasticity of excitatory and inhibitory intertectal inputs in Xenopus tadpoles (Q39433955) (← links)
- Development of the retinotectal system in the direct-developing frog Eleutherodactylus coqui in comparison with other anurans (Q39654366) (← links)
- The role of visual experience in the formation of binocular projections in frogs (Q39827120) (← links)
- Regulation of N-methyl-D-aspartate (NMDA) receptor function during the rearrangement of developing neuronal connections (Q40556180) (← links)
- Expression patterns of focal adhesion associated proteins in the developing retina (Q40687125) (← links)
- Tumor protein Tctp regulates axon development in the embryonic visual system (Q40857877) (← links)
- Developmental mechanisms that generate precise patterns of neuronal connectivity (Q40873406) (← links)
- Trophic factor-induced activity 'signature' regulates the functional expression of postsynaptic excitatory acetylcholine receptors required for synaptogenesis (Q41134089) (← links)
- Visual input induces long-term potentiation of developing retinotectal synapses (Q41742711) (← links)
- An NMDA receptor-dependent mechanism for subcellular segregation of sensory inputs in the tadpole optic tectum (Q41878056) (← links)
- Ephrin-B regulates the Ipsilateral routing of retinal axons at the optic chiasm (Q42025303) (← links)
- GABAergic circuits control stimulus-instructed receptive field development in the optic tectum. (Q42409806) (← links)
- Lipofection of cDNAs in the embryonic vertebrate central nervous system (Q44023658) (← links)
- Moving visual stimuli rapidly induce direction sensitivity of developing tectal neurons (Q44170947) (← links)
- Relationship of retinotopic ordering of axons in the optic pathway to the formation of visual maps in central targets (Q44355791) (← links)
- Visuospatial information in the retinotectal system of xenopus before correct image formation by the developing eye. (Q44408491) (← links)
- Timing and topography of nucleus magnocellularis innervation by the cochlear ganglion (Q44898217) (← links)
- Development of the tectum and diencephalon in relation to the time of arrival of the earliest optic fibres in Xenopus (Q45247762) (← links)
- Correlation between morphological and biochemical effects of ethanol on neuroblast-enriched cultures derived from three-day-old chick embryos (Q45423486) (← links)
- Homer expression in the Xenopus tadpole nervous system (Q46463678) (← links)