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小脑星状细胞依赖学习的树突肥大:局部回路神经元的可塑性

Learning-dependent dendritic hypertrophy of cerebellar stellate cells: plasticity of local circuit neurons.

作者信息

Kleim J A, Swain R A, Czerlanis C M, Kelly J L, Pipitone M A, Greenough W T

机构信息

Department of Psychology, University of Illinois, Urbana 61801, USA.

出版信息

Neurobiol Learn Mem. 1997 Jan;67(1):29-33. doi: 10.1006/nlme.1996.3742.

Abstract

Recent work has shown that motor learning, but not mere motor activity, changes the morphology of Purkinje cells, the major projection neurons of the cerebellar cortex. In the present study we examined how motor skill learning affects the dendritic morphology of the stellate local circuit neurons. Adult female rats were either trained to complete a complex motor learning task or forced to traverse a flat, obstacle-free runway. Golgi impregnated stellate cells were then traced via camera lucida and their dendritic arborizations examined with a concentric ring analysis. Results showed the motor learning animals to have significantly greater stellate cell dendritic arborizations than the activity controls. Thus these local circuit neurons exhibit morphological plasticity.

摘要

最近的研究表明,运动学习而非单纯的运动活动,会改变浦肯野细胞(小脑皮质的主要投射神经元)的形态。在本研究中,我们研究了运动技能学习如何影响星状局部回路神经元的树突形态。成年雌性大鼠要么接受训练以完成一项复杂的运动学习任务,要么被迫在平坦、无障碍物的跑道上穿行。然后通过明视野显微镜追踪高尔基染色的星状细胞,并使用同心环分析检查它们的树突分支。结果显示,与活动对照组相比,进行运动学习的动物的星状细胞树突分支明显更多。因此,这些局部回路神经元表现出形态可塑性。

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