The external globus pallidus (GPe) of the basal ganglia has been underappreciated owing to poor understanding of its cells and circuits.
First-pass extracted concept
external globus pallidus
Aliases
GPe
Evidence Snippets
Supporting Sources
Linked Claims
Recent data on GPe cell and circuit complexity motivate new proposals for computational rules of the basal ganglia.
In summary, recent data prompt new proposals for computational rules of the basal ganglia.
Recent data show that the GPe does not conform to traditional views of the basal ganglia.
These discoveries have revealed that the GPe does not conform to traditional views of the basal ganglia.
The afferent and efferent connections of the GPe span both the direct and indirect basal ganglia pathways.
In particular, recent evidence confirms that the afferent and efferent connections of the GPe span both the direct and the indirect pathways.
The external globus pallidus has been underappreciated because its cells and circuits were poorly understood.
The external globus pallidus (GPe) of the basal ganglia has been underappreciated owing to poor understanding of its cells and circuits.
The GPe is broadly interconnected beyond the basal ganglia and has emerging roles in both motor and non-motor functions.
Furthermore, the GPe displays broad interconnectivity beyond the basal ganglia, consistent with its emerging multifaceted roles in both motor and non-motor functions.
The GPe was previously assumed to be a homogeneous neuron population that primarily relays information through the indirect basal ganglia pathway.
It was assumed that the GPe consisted of a homogeneous neuron population primarily serving as a 'relay station' for information flowing through the indirect basal ganglia pathway.
Advanced tools in rodent models sparked renewed interest in the GPe.
However, the advent of advanced tools in rodent models has sparked a resurgence in interest in the GPe.