Deep cerebellar nuclei neurons receive both inhibitory (GABAergic) synaptic currents from Purkinje cells (within the cerebellar cortex) and excitatory (glutamatergic) synaptic currents from mossy fibers. Those two deep cerebellar nucleus inputs are thought to be also adaptive, embedding interesting properties in the framework of accurate movements. We show that distributed spike-timing-dependent plasticity mechanisms (STDP) located at different cerebellar sites (parallel fibers to Purkinje cells, mossy fibers to deep cerebellar nucleus cells, and Purkinje cells to deep cerebellar nucleus cells) in close-loop simulations provide an explanation for the complex learning properties of the cerebellum in motor learning. Concretely, we propose a n...
During natural learning, synaptic plasticity is thought to evolve dynamically and redistribute withi...
During natural learning, synaptic plasticity is thought to evolve dynamically and redistribute withi...
During natural learning, synaptic plasticity is thought to evolve dynamically and redistribute withi...
The cerebellum is thought to play a critical role in procedural learning, but the relationship betwe...
The cerebellum is known to play a critical role in learning relevant patterns of activity for adapti...
The cerebellum is thought to play a critical role in procedural learning, but the relationship betwe...
The cerebellum is known to play a critical role in learning relevant patterns of activity for adapti...
Adaptable gain regulation is at the core of the forward controller operation performed by the cerebr...
In recent years, it has become clear that motor learning, as revealed by associative eyelid conditio...
In recent years, it has become clear that motor learning, as revealed by associative eyelid conditio...
The cerebellum plays a crucial role in motor learning and it acts as a predictive controller. Modeli...
Experimental and computational analyses of cerebellar function indicate that excitatory synapses ont...
During natural learning, synaptic plasticity is thought to evolve dynamically and redistribute withi...
The cerebellum plays a crucial role in motor learning and it acts as a predictive controller. Modeli...
During natural learning, synaptic plasticity is thought to evolve dynamically and redistribute withi...
During natural learning, synaptic plasticity is thought to evolve dynamically and redistribute withi...
During natural learning, synaptic plasticity is thought to evolve dynamically and redistribute withi...
During natural learning, synaptic plasticity is thought to evolve dynamically and redistribute withi...
The cerebellum is thought to play a critical role in procedural learning, but the relationship betwe...
The cerebellum is known to play a critical role in learning relevant patterns of activity for adapti...
The cerebellum is thought to play a critical role in procedural learning, but the relationship betwe...
The cerebellum is known to play a critical role in learning relevant patterns of activity for adapti...
Adaptable gain regulation is at the core of the forward controller operation performed by the cerebr...
In recent years, it has become clear that motor learning, as revealed by associative eyelid conditio...
In recent years, it has become clear that motor learning, as revealed by associative eyelid conditio...
The cerebellum plays a crucial role in motor learning and it acts as a predictive controller. Modeli...
Experimental and computational analyses of cerebellar function indicate that excitatory synapses ont...
During natural learning, synaptic plasticity is thought to evolve dynamically and redistribute withi...
The cerebellum plays a crucial role in motor learning and it acts as a predictive controller. Modeli...
During natural learning, synaptic plasticity is thought to evolve dynamically and redistribute withi...
During natural learning, synaptic plasticity is thought to evolve dynamically and redistribute withi...
During natural learning, synaptic plasticity is thought to evolve dynamically and redistribute withi...
During natural learning, synaptic plasticity is thought to evolve dynamically and redistribute withi...