Article
Disruption of learned timing in P/Q calcium channel mutants.
PloS one - 1 Jan 2008
Katoh Akira, Chapman Peter J, Raymond Jennifer L
Abstract excerpt
To optimize motor performance, both the amplitude and temporal properties of movements should be modifiable by motor learning. Here we report that the modification of movement timing is highly dependent on signaling through P/Q-type voltage-dependent calcium channels. Two lines of mutant mice heterozygous for P/Q-type voltage-dependent calcium channels exhibited impaired plasticity of eye movement timing, but...
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