Neural Circuits and Behavior Laboratory, Champalimaud Neuroscience Programme, Champalimaud Centre for the Unknown, Av. Brasília, Doca de Pedrouços, 1400-038 Lisboa, Portugal.
Curr Opin Neurobiol. 2011 Aug;21(4):609-15. doi: 10.1016/j.conb.2011.06.011. Epub 2011 Jul 20.
The cerebellum plays an essential role in motor learning. The ability to identify specific sensory and motor signals carried by neurons with known connectivity makes the cerebellum an attractive system for investigating how synaptic plasticity relates to learning. Early studies focused primarily on a single form of plasticity, long-term depression at parallel fiber-Purkinje cell synapses. Recent work has highlighted both the diversity of synaptic plasticity that exists within the cerebellum and the fact that individual plasticity mechanisms can have unexpected consequences when they act within neural circuits.
小脑在运动学习中起着至关重要的作用。小脑能够识别具有已知连接的神经元携带的特定感觉和运动信号,这使其成为研究突触可塑性与学习之间关系的一个有吸引力的系统。早期的研究主要集中在一种形式的可塑性上,即平行纤维-浦肯野细胞突触的长时程压抑。最近的工作强调了小脑内存在的突触可塑性的多样性,以及当单个可塑性机制在神经回路中发挥作用时可能产生意想不到的后果的事实。