Cerebellar granule cells, which constitute half the brain's neurons, supply Purkinje cells with contextual information necessary for motor learning, but how they encode this information is unknown. Here we show, using two-photon microscopy to track neural activity over multiple days of cerebellum-dependent eyeblink conditioning in mice, that granule cell populations acquire a dense representation of the anticipatory eyelid movement. Initially, granule cells responded to neutral visual and somatosensory stimuli as well as periorbital airpuffs used for training. As learning progressed, two-thirds of monitored granule cells acquired a conditional response whose timing matched or preceded the learned eyelid movements. Granule cell activity cova...
The cerebellum has long been implicated in motor learning and sensorimotor coordination. In the inpu...
SummaryClosed-loop circuitries between cortical and subcortical regions can facilitate precision of ...
While research on the cerebellar cortex is crystallizing our understanding of its function in learni...
Cerebellar granule cells, which constitute half the brain's neurons, supply Purkinje cells with cont...
"Motor learning is a crucial process that is present throughout life, sincewe learn how to walk and ...
Granule cells at the input layer of the cerebellum comprise over half the neurons in the human brain...
Abstract Associative learning during delay eyeblink conditioning (EBC) depends on an intact cerebell...
Excitatory drive enters the cerebellum via mossy fibers, which activate granule cells, and climbing ...
Excitatory drive enters the cerebellum via mossy fibers, which activate granule cells, and climbing ...
For many years the vertebrate cerebellum has been known to play a central role in motor control. Thi...
The cerebellum is an area of the brain that plays a crucial role in the learning of motor skills. Th...
<div><p>Excitatory drive enters the cerebellum via mossy fibers, which activate granule cells, and c...
Closed-loop circuitries between cortical and subcortical regions can facilitate precision of output ...
A model for cerebellar involvement in motor learning was tested using classical eyelid conditioning ...
SummaryThe cerebellum stores associative motor memories essential for properly timed movement; howev...
The cerebellum has long been implicated in motor learning and sensorimotor coordination. In the inpu...
SummaryClosed-loop circuitries between cortical and subcortical regions can facilitate precision of ...
While research on the cerebellar cortex is crystallizing our understanding of its function in learni...
Cerebellar granule cells, which constitute half the brain's neurons, supply Purkinje cells with cont...
"Motor learning is a crucial process that is present throughout life, sincewe learn how to walk and ...
Granule cells at the input layer of the cerebellum comprise over half the neurons in the human brain...
Abstract Associative learning during delay eyeblink conditioning (EBC) depends on an intact cerebell...
Excitatory drive enters the cerebellum via mossy fibers, which activate granule cells, and climbing ...
Excitatory drive enters the cerebellum via mossy fibers, which activate granule cells, and climbing ...
For many years the vertebrate cerebellum has been known to play a central role in motor control. Thi...
The cerebellum is an area of the brain that plays a crucial role in the learning of motor skills. Th...
<div><p>Excitatory drive enters the cerebellum via mossy fibers, which activate granule cells, and c...
Closed-loop circuitries between cortical and subcortical regions can facilitate precision of output ...
A model for cerebellar involvement in motor learning was tested using classical eyelid conditioning ...
SummaryThe cerebellum stores associative motor memories essential for properly timed movement; howev...
The cerebellum has long been implicated in motor learning and sensorimotor coordination. In the inpu...
SummaryClosed-loop circuitries between cortical and subcortical regions can facilitate precision of ...
While research on the cerebellar cortex is crystallizing our understanding of its function in learni...