Excitatory and inhibitory interneurons play a key role in the establishment of neuronal responses and circuit properties in the brain. Despite their importance in brain function, the structural development of interneurons has not been well studied. We used in vivo time-lapse imaging in intact anesthetized Xenopus tadpoles to determine the morphological events underlying the development of interneuron dendritic arbor structure. Single optic tectal neurons were labeled with DiI and imaged at daily intervals over 4 days in intact albino Xenopus tadpoles. The same neurons were also imaged at shorter intervals to determine the dynamic rearrangements in arbor branches that accompany large-scale arbor growth. Tectal interneurons, like projection n...
Dynamic rearrangements of axon terminal arbors may be critical for establishing appropriate connecti...
Dendritic spines undergo continuous remodeling during development of the nervous sys-tem. Their stab...
The effects of highly prevalent early-life seizures on neuronal activity-dependent developmental pro...
In vivo imaging of optic tectal neurons in the intact Xenopus tadpole permits direct observation of ...
SummaryDendrites, axons, and synapses are dynamic during circuit development; however, changes in mi...
Dendritic spines undergo continuous remodeling during development of the nervous system. Their stabi...
SummaryDendrites, axons, and synapses are dynamic during circuit development; however, changes in mi...
Time-lapse video recordings were made of individual retinal ganglion cell fibres growing to and term...
The brain contains a diverse array of neurons that vary in complexity. Investigating the properties ...
Neurons acquire their distinct shapes after passing through many transitional stages in early develo...
<p>(<b>A</b>) Total number of branches in tectal neurons of stage 45 <i>Xenopus</i> tadpoles at the ...
Dynamic rearrangements of axon terminal arbors may be critical for establishing appropriate connecti...
Neurobiotin was injected into individual spinal interneurons in the Xenopus tadpole to discern their...
dendritic tree (phase 2). The dendritic tree develops inABSTRACT: Neurons acquire their distinct sha...
Dynamic rearrangements of axon terminal arbors may be critical for establishing appropriate connecti...
Dynamic rearrangements of axon terminal arbors may be critical for establishing appropriate connecti...
Dendritic spines undergo continuous remodeling during development of the nervous sys-tem. Their stab...
The effects of highly prevalent early-life seizures on neuronal activity-dependent developmental pro...
In vivo imaging of optic tectal neurons in the intact Xenopus tadpole permits direct observation of ...
SummaryDendrites, axons, and synapses are dynamic during circuit development; however, changes in mi...
Dendritic spines undergo continuous remodeling during development of the nervous system. Their stabi...
SummaryDendrites, axons, and synapses are dynamic during circuit development; however, changes in mi...
Time-lapse video recordings were made of individual retinal ganglion cell fibres growing to and term...
The brain contains a diverse array of neurons that vary in complexity. Investigating the properties ...
Neurons acquire their distinct shapes after passing through many transitional stages in early develo...
<p>(<b>A</b>) Total number of branches in tectal neurons of stage 45 <i>Xenopus</i> tadpoles at the ...
Dynamic rearrangements of axon terminal arbors may be critical for establishing appropriate connecti...
Neurobiotin was injected into individual spinal interneurons in the Xenopus tadpole to discern their...
dendritic tree (phase 2). The dendritic tree develops inABSTRACT: Neurons acquire their distinct sha...
Dynamic rearrangements of axon terminal arbors may be critical for establishing appropriate connecti...
Dynamic rearrangements of axon terminal arbors may be critical for establishing appropriate connecti...
Dendritic spines undergo continuous remodeling during development of the nervous sys-tem. Their stab...
The effects of highly prevalent early-life seizures on neuronal activity-dependent developmental pro...