Development and characterization of commissural interneurones in the spinal cord of Xenopus laevis embryos revealed by antibodies to glycine.
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Summary
It is shown that a defined population of spinal interneurones in the CNS of Xenopus laevis embryos have a clearly defined group identity and programme of development and opens the way to further experiments on factors controlling spinal cord pathway determination.
- Type
- article
- Published
- 1988-07-01
- Cited by
- 75
- References
- 38
- OpenAlex
- https://openalex.org/W1871886121
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:511742
Keywords
Biology, Commissure, Xenopus, Spinal cord, Glycine receptor
References
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- The formation of the axonal pattern in the embryonic avian retina
Cited by
- A longitudinal gradient of synaptic drive in the spinal cord of Xenopus embryos and its role in co‐ordination of swimming.
- The Influence of Magnesium lons on the NMDA Mediated Responses of Ventral Rhythmic Neurons in the Spinal Cord of Xenopus Embryos
- Ion Channel Regulation in Growth Cone Guidance by Semaphorin 3A in Xenopus laevis Spinal Neurons
- Ca2+-Permeable AMPA Receptors and Spontaneous Presynaptic Transmitter Release at Developing Excitatory Spinal Synapses
- Identification of initially appearing glycine‐immunoreactive neurons in the embryonic zebrafish brain
- Coordinated Motor Activity in Simulated Spinal Networks Emerges from Simple Biologically Plausible Rules of Connectivity
- Defining the excitatory neurons that drive the locomotor rhythm in a simple vertebrate: insights into the origin of reticulospinal control
- Development of an Identified Spinal Commissural Interneuron Population in an Amniote: Neurons of the Avian Hofmann Nuclei
- Neuroanatomical and functional analysis of neural tube formation in notochordless Xenopus embryos; laterality of the ventral spinal cord is lost.
- Locomotor pattern generation in the spinal cord: Studies in adult lamprey and zebrafish
- Roles of ascending inhibition during two rhythmic motor patterns in Xenopus tadpoles.
- The stopping response of Xenopus laevis embryos: pharmacology and intracellular physiology of rhythmic spinal neurones and hindbrain neurones.
- Genes controlling and mediating locomotion behavior of the zebrafish embryo and larva.
- Motoneurons of the axial swimming muscles in hatchling Xenopus tadpoles: Features, distribution, and central synapses
- Roles of Glycinergic Inhibition and N‐Methyl‐D‐Aspartate Receptor Mediated Excitation in the Locomotor Rhythmicity of One Half of the Xenopus Embryo Central Nervous System
- The unc-5, unc-6, and unc-40 genes guide circumferential migrations of pioneer axons and mesodermal cells on the epidermis in C. elegans.
- Development of glycine immunoreactivity in the brain of the sea lamprey: Comparison with γ‐aminobutyric acid immunoreactivity
- Zebrafish bandoneon mutants display behavioral defects due to a mutation in the glycine receptor beta-subunit.
- Turning of retinal growth cones in a netrin-1 gradient mediated by the netrin receptor DCC.
- Spinal cord neuron classes in embryos of the smooth newt Triturus vulgaris: a horseradish peroxidase and immunocytochemical study.
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