Cerebellar granule cells (GCs) account for more than half of all neurons in the CNS of vertebrates. Theoretical work has suggested that the abundance of GCs is advantageous for sparse coding during memory formation. Here, we minimized the output of the majority of GCs by selectively eliminating their CaV2.1 (P/Q-type) Ca2+ channels, which mediate the bulk of their neurotransmitter release. This resulted in reduced GC output to Purkinje cells (PCs) and stellate cells (SCs) as well as in impaired long-term plasticity at GC-PC synapses. As a consequence modulation amplitude and regularity of simple spike (SS) output were affected. Surprisingly, the overall motor performance was intact, whereas demanding motor learning and memory consolidation ...
Long-term synaptic plasticity is believed to be the cellular substrate of learning and memory. Synap...
For half a century it was assumed that granule cells use ultra-sparse encoding, but now in vivo calc...
Cerebellar granule cells (GCs) make up the majority of all neurons in the vertebrate brain, but hete...
Cerebellar granule cells (GCs) account for more than half of all neurons in the CNS of vertebrates. ...
SummaryCerebellar granule cells (GCs) account for more than half of all neurons in the CNS of verteb...
Cerebellar cortical throughput involved in motor control comprises granule cells (GCs) and Purkinje ...
The cerebellar granule cells are the most numerous neurons of the brain. They are also among the mos...
Variations in intracellular calcium concentration ([Ca2+] i) provide a critical signal for synaptic ...
The cerebellum plays a role in the control of sensorimotor functions and possibly also of higher cog...
The cerebellum is essential for some forms of motor learning and storage of motor memories. The simp...
CaV3.1 T-type channels are abundant at the cerebellar synapse between parallel fibers and Purkinje c...
In the cerebellar cortex, inhibitory inputs to granule cells exhibit prominent tonic and spillover c...
The ability of the cerebellar cortex to learn from experience ensures the accuracy of movements and ...
International audienceCerebellar Purkinje neurons integrate information transmitted at excitatory sy...
Inhibition of granule cells plays a key role in gating the flow of signals into the cerebellum, and ...
Long-term synaptic plasticity is believed to be the cellular substrate of learning and memory. Synap...
For half a century it was assumed that granule cells use ultra-sparse encoding, but now in vivo calc...
Cerebellar granule cells (GCs) make up the majority of all neurons in the vertebrate brain, but hete...
Cerebellar granule cells (GCs) account for more than half of all neurons in the CNS of vertebrates. ...
SummaryCerebellar granule cells (GCs) account for more than half of all neurons in the CNS of verteb...
Cerebellar cortical throughput involved in motor control comprises granule cells (GCs) and Purkinje ...
The cerebellar granule cells are the most numerous neurons of the brain. They are also among the mos...
Variations in intracellular calcium concentration ([Ca2+] i) provide a critical signal for synaptic ...
The cerebellum plays a role in the control of sensorimotor functions and possibly also of higher cog...
The cerebellum is essential for some forms of motor learning and storage of motor memories. The simp...
CaV3.1 T-type channels are abundant at the cerebellar synapse between parallel fibers and Purkinje c...
In the cerebellar cortex, inhibitory inputs to granule cells exhibit prominent tonic and spillover c...
The ability of the cerebellar cortex to learn from experience ensures the accuracy of movements and ...
International audienceCerebellar Purkinje neurons integrate information transmitted at excitatory sy...
Inhibition of granule cells plays a key role in gating the flow of signals into the cerebellum, and ...
Long-term synaptic plasticity is believed to be the cellular substrate of learning and memory. Synap...
For half a century it was assumed that granule cells use ultra-sparse encoding, but now in vivo calc...
Cerebellar granule cells (GCs) make up the majority of all neurons in the vertebrate brain, but hete...