<div><p>Neuronal circuits are formed according to a genetically predetermined program and then reconstructed in an experience-dependent manner. While the existence of experience-dependent plasticity has been demonstrated for the visual and other sensory systems, it remains unknown whether this is also the case for motor systems. Here we examined the effects of eliminating sensory inputs on the development of peristaltic movements in <i>Drosophila</i> embryos and larvae. The peristalsis is initially slow and uncoordinated, but gradually develops into a mature pattern during late embryonic stages. We tested whether inhibiting the transmission of specific sensory neurons during this period would have lasting effects on the properties of the se...
More than 30 years of studies into Drosophila melanogaster neurogenesis have revealed fundamental in...
The Drosophila larva has turned into a particularly simple model system for studying the neuronal ba...
Background The skills used by winged insects to explore their environment are strongly dependent upo...
Neuronal circuits are formed according to a genetically predetermined program and then reconstructed...
I aim to understand the interaction between the environment and the developing brain through investi...
We have tested the hypothesis that larval neurones guide growth of adult sensory axons in Drosophila...
Precocious movements are widely seen in embryos of various animal species. Whether such movements vi...
The regulatory mechanisms that orchestrate the developmental acquisition of electrical properties in...
Sensory axons of different sensory modalities project into typical domains within insect ganglia. Ta...
The Drosophila larva is an excellent model organism to study the neural correlates of behavior. It p...
This work was supported by KAKENHI Grant-in-Aid 19H04742, 18H05113, and 17H05554 to A.N.; 21H04789 a...
We have introduced an in-situ preparation to induce motor unit activity by stimulating a sensory–CNS...
Escape behavior is the critical output of rapid sensorimotor processing in the brain that allows ani...
Developing neural circuits are influenced by activity and are especially sensitive to changes in act...
SummaryBackgroundMuch of our understanding of how neural networks develop is based on studies of sen...
More than 30 years of studies into Drosophila melanogaster neurogenesis have revealed fundamental in...
The Drosophila larva has turned into a particularly simple model system for studying the neuronal ba...
Background The skills used by winged insects to explore their environment are strongly dependent upo...
Neuronal circuits are formed according to a genetically predetermined program and then reconstructed...
I aim to understand the interaction between the environment and the developing brain through investi...
We have tested the hypothesis that larval neurones guide growth of adult sensory axons in Drosophila...
Precocious movements are widely seen in embryos of various animal species. Whether such movements vi...
The regulatory mechanisms that orchestrate the developmental acquisition of electrical properties in...
Sensory axons of different sensory modalities project into typical domains within insect ganglia. Ta...
The Drosophila larva is an excellent model organism to study the neural correlates of behavior. It p...
This work was supported by KAKENHI Grant-in-Aid 19H04742, 18H05113, and 17H05554 to A.N.; 21H04789 a...
We have introduced an in-situ preparation to induce motor unit activity by stimulating a sensory–CNS...
Escape behavior is the critical output of rapid sensorimotor processing in the brain that allows ani...
Developing neural circuits are influenced by activity and are especially sensitive to changes in act...
SummaryBackgroundMuch of our understanding of how neural networks develop is based on studies of sen...
More than 30 years of studies into Drosophila melanogaster neurogenesis have revealed fundamental in...
The Drosophila larva has turned into a particularly simple model system for studying the neuronal ba...
Background The skills used by winged insects to explore their environment are strongly dependent upo...