SummaryBackgroundDuring development, spinal networks undergo an intense period of maturation in which immature forms of motor behavior are observed. Such behaviors are transient, giving way to more mature activity as development proceeds. The processes governing age-specific transitions in motor behavior are not fully understood.ResultsUsing in vivo patch clamp electrophysiology, we have characterized ionic conductances and firing patterns of developing zebrafish spinal neurons. We find that a kernel of spinal interneurons, the ipsilateral caudal (IC) cells, generate inherent bursting activity that depends upon a persistent sodium current (INaP). We further show that developmental transitions in motor behavior are accompanied by changes in ...
Locomotion rhythms are thought to be generated by neurons in the central-pattern-generator (CPG) cir...
The nervous system directly controls the muscles of the body, and thus, the behavior of the animal. ...
Electrical coupling is important in rhythm generating systems. We examine its role in circuits contr...
SummaryBackgroundDuring development, spinal networks undergo an intense period of maturation in whic...
SummaryBackgroundDeveloping neural networks display spontaneous and correlated rhythmic bursts of ac...
Background: Developing neural networks display spontaneous and correlated rhythmic bursts of action ...
The development of spinal circuits underlying motor behaviors was examined in zebrafish. Zebrafish e...
Many spinal circuits dedicated to locomotor control have been identified in the developing zebrafish...
The development of swimming was investigated in zebrafish aged 1.5 to 5 days postfertilization by ex...
The cellular and network basis for most vertebrate locomotor central pattern generators (CPGs) is in...
AbstractThere is a need to understand the mechanisms of neural synchronization during development be...
Locomotion relies on neural networks called central pattern generators (CPGs) that generate periodic...
The cellular and network basis for most vertebrate locomotor central pattern generators (CPGs) is in...
Locomotion in immature animals is often inflexible, but gradually acquires versatility to enable ani...
The cellular and network basis for most vertebrate locomotor central pattern generators (CPGs) is in...
Locomotion rhythms are thought to be generated by neurons in the central-pattern-generator (CPG) cir...
The nervous system directly controls the muscles of the body, and thus, the behavior of the animal. ...
Electrical coupling is important in rhythm generating systems. We examine its role in circuits contr...
SummaryBackgroundDuring development, spinal networks undergo an intense period of maturation in whic...
SummaryBackgroundDeveloping neural networks display spontaneous and correlated rhythmic bursts of ac...
Background: Developing neural networks display spontaneous and correlated rhythmic bursts of action ...
The development of spinal circuits underlying motor behaviors was examined in zebrafish. Zebrafish e...
Many spinal circuits dedicated to locomotor control have been identified in the developing zebrafish...
The development of swimming was investigated in zebrafish aged 1.5 to 5 days postfertilization by ex...
The cellular and network basis for most vertebrate locomotor central pattern generators (CPGs) is in...
AbstractThere is a need to understand the mechanisms of neural synchronization during development be...
Locomotion relies on neural networks called central pattern generators (CPGs) that generate periodic...
The cellular and network basis for most vertebrate locomotor central pattern generators (CPGs) is in...
Locomotion in immature animals is often inflexible, but gradually acquires versatility to enable ani...
The cellular and network basis for most vertebrate locomotor central pattern generators (CPGs) is in...
Locomotion rhythms are thought to be generated by neurons in the central-pattern-generator (CPG) cir...
The nervous system directly controls the muscles of the body, and thus, the behavior of the animal. ...
Electrical coupling is important in rhythm generating systems. We examine its role in circuits contr...