Dopamine (DA) plays an important role in modulating spinal motor circuits. Studies of both developing and adult zebrafish suggest a role for dopaminergic (DAergic) neurons in regulating spinal motor behaviour, but their role during embryonic maturation of motor output remains unclear. Here, the supraspinal role of DA signalling on early motor behaviour was examined. Firstly, using tyrosine hydroxylase (TH) immunohistochemistry, it was found that TH axons invade the rostral section of the zebrafish spinal cord at around 24 hours post-fertilisation (hpf). Perturbing DA receptor signalling with D4 type DA receptor compounds, knockdown of D4 receptors or ablation of diencephalon DAergic neurons (DDNs) markedly alters the frequency of immature f...
SummaryVertebrate rod photoreceptors are thought to have evolved from cone photoreceptors only after...
To determine the impact of a controlled loss of dopaminergic neurons on locomotor function, we gener...
Many spinal circuits dedicated to locomotor control have been identified in the developing zebrafish...
SummaryBackgroundDopamine (DA) has long been known to have modulatory effects on vertebrate motor ci...
SummaryCoordinated development of brain stem and spinal target neurons is pivotal for the emergence ...
Dopamine is a key neuromodulator of locomotory circuits, yet, the role that dopamine plays during de...
Coordinated development of brain stem and spinal target neurons is pivotal for the emergence of a pr...
Dopamine (DA) is a known modulator of motor circuits. Here, Jay et al. use the zebrafish to study in...
Dopamine is a highly conserved neurotransmitter, and it is known to be involved reward, locomotion, ...
The development of spinal circuits underlying motor behaviors was examined in zebrafish. Zebrafish e...
Dominance hierarchies are an evolutionary mechanism to ensure the stability of animal groups by enab...
Voluntary motor control requires circuits in the brain to develop synchronously with spinal motor ci...
Neural control of behaviour during development is a complicated orchestration of gene expression, ne...
Essential components of animal behaviour are modulated by dopaminergic (DA) and noradrenergic circui...
The development of swimming was investigated in zebrafish aged 1.5 to 5 days postfertilization by ex...
SummaryVertebrate rod photoreceptors are thought to have evolved from cone photoreceptors only after...
To determine the impact of a controlled loss of dopaminergic neurons on locomotor function, we gener...
Many spinal circuits dedicated to locomotor control have been identified in the developing zebrafish...
SummaryBackgroundDopamine (DA) has long been known to have modulatory effects on vertebrate motor ci...
SummaryCoordinated development of brain stem and spinal target neurons is pivotal for the emergence ...
Dopamine is a key neuromodulator of locomotory circuits, yet, the role that dopamine plays during de...
Coordinated development of brain stem and spinal target neurons is pivotal for the emergence of a pr...
Dopamine (DA) is a known modulator of motor circuits. Here, Jay et al. use the zebrafish to study in...
Dopamine is a highly conserved neurotransmitter, and it is known to be involved reward, locomotion, ...
The development of spinal circuits underlying motor behaviors was examined in zebrafish. Zebrafish e...
Dominance hierarchies are an evolutionary mechanism to ensure the stability of animal groups by enab...
Voluntary motor control requires circuits in the brain to develop synchronously with spinal motor ci...
Neural control of behaviour during development is a complicated orchestration of gene expression, ne...
Essential components of animal behaviour are modulated by dopaminergic (DA) and noradrenergic circui...
The development of swimming was investigated in zebrafish aged 1.5 to 5 days postfertilization by ex...
SummaryVertebrate rod photoreceptors are thought to have evolved from cone photoreceptors only after...
To determine the impact of a controlled loss of dopaminergic neurons on locomotor function, we gener...
Many spinal circuits dedicated to locomotor control have been identified in the developing zebrafish...