Abstract The emergence of coordinated network function during nervous system development is often associated with critical periods. These phases are sensitive to activity perturbations during, but not outside, of the critical period, that can lead to permanently altered network function for reasons that are not well understood. In particular, the mechanisms that transduce neuronal activity to regulating changes in neuronal physiology or structure are not known. Here, we take advantage of a recently identified invertebrate model for studying critical periods, the Drosophila larval locomotor system. Manipulation of neuronal activity during this critical period is sufficient to increase synaptic excitation and to permanently leave the locomoto...
In many nervous systems, the establishment of neural circuits is known to proceed via a two-stage pr...
Nitric oxide (NO) regulates neuronal function and thus is critical for tuning neuronal communication...
Nitric oxide (NO) regulates neuronal function and thus is critical for tuning neuronal communication...
The emergence of coordinated network function during nervous system development is often associated ...
From Springer Nature via Jisc Publications RouterHistory: received 2021-07-29, accepted 2021-09-17, ...
Developing neural circuits are influenced by activity and are especially sensitive to changes in act...
Drosophila circadian behavior relies on the network of heterogeneous groups of clock neurons. Short-...
Reactive oxygen species (ROS) have been extensively studied as damaging agents associated with agein...
Reactive oxygen species (ROS) have been extensively studied as damaging agents associated with agein...
AbstractA nitric oxide (NO)/cyclic GMP (cGMP) signaling pathway is thought to play an important role...
SummaryNeuronal plasticity is an important feature of the developing brain and requires neuronal cir...
Techniques to induce activity-dependent neuronal plasticity in vivo allow the underlying signaling p...
Cell division and subsequent programmed cell death in imaginal discs of Drosophila larvae determine ...
AbstractCell division and subsequent programmed cell death in imaginal discs of Drosophila larvae de...
Cell division and subsequent programmed cell death in imaginal discs of Drosophila larvae determine ...
In many nervous systems, the establishment of neural circuits is known to proceed via a two-stage pr...
Nitric oxide (NO) regulates neuronal function and thus is critical for tuning neuronal communication...
Nitric oxide (NO) regulates neuronal function and thus is critical for tuning neuronal communication...
The emergence of coordinated network function during nervous system development is often associated ...
From Springer Nature via Jisc Publications RouterHistory: received 2021-07-29, accepted 2021-09-17, ...
Developing neural circuits are influenced by activity and are especially sensitive to changes in act...
Drosophila circadian behavior relies on the network of heterogeneous groups of clock neurons. Short-...
Reactive oxygen species (ROS) have been extensively studied as damaging agents associated with agein...
Reactive oxygen species (ROS) have been extensively studied as damaging agents associated with agein...
AbstractA nitric oxide (NO)/cyclic GMP (cGMP) signaling pathway is thought to play an important role...
SummaryNeuronal plasticity is an important feature of the developing brain and requires neuronal cir...
Techniques to induce activity-dependent neuronal plasticity in vivo allow the underlying signaling p...
Cell division and subsequent programmed cell death in imaginal discs of Drosophila larvae determine ...
AbstractCell division and subsequent programmed cell death in imaginal discs of Drosophila larvae de...
Cell division and subsequent programmed cell death in imaginal discs of Drosophila larvae determine ...
In many nervous systems, the establishment of neural circuits is known to proceed via a two-stage pr...
Nitric oxide (NO) regulates neuronal function and thus is critical for tuning neuronal communication...
Nitric oxide (NO) regulates neuronal function and thus is critical for tuning neuronal communication...