首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >REGION AND TASK-SPECIFIC ACTIVATION OF ARC IN PRIMARY MOTOR CORTEX OF RATS FOLLOWING MOTOR SKILL LEARNING
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REGION AND TASK-SPECIFIC ACTIVATION OF ARC IN PRIMARY MOTOR CORTEX OF RATS FOLLOWING MOTOR SKILL LEARNING

机译:学习过运动技能的大鼠主运动皮层弧的区域和任务激活

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摘要

Motor learning requires protein synthesis within the primary motor cortex (M1). Here, we show that the immediate early gene ArclArg3.1 is specifically induced in M1 by learning a motor skill. Arc mRNA was quantified using a fluorescent in situ hybridization assay in adult Long-Evans rats learning a skilled reaching task (SRT), in rats performing reaching-like forelimb movement without learning (ACT) and in rats that were trained in the operant but not the motor elements of the task (controls). Apart from M1, Arc expression was assessed within the rostral motor area (RMA), primary somatosensory cortex (S1), striatum (ST) and cerebellum. In SRT animals, Arc mRNA levels in M1 contralateral to the trained limb were 31% higher than ipsi-lateral (p < 0.001), 31% higher than in the contralateral M1 of ACT animals (p < 0.001) and 48% higher than in controls (p < 0.001). Arc mRNA expression in SRT was positively correlated with learning success between two sessions (r = 0.52; p = 0.026). For RMA, S1, ST or cerebellum no significant differences in Arc mRNA expression were found between hemispheres or across behaviors. As Arc expression has been related to different forms of cellular plasticity, these findings suggest a link between M1 Arc expression and motor skill learning in rats.
机译:运动学习需要初级运动皮层(M1)内的蛋白质合成。在这里,我们显示了通过学习运动技能在M1中特异性诱导了立即早期基因ArclArg3.1。使用荧光原位杂交法对成年的Long-Evans大鼠学习熟练的到达任务(SRT),进行未达到学习的到达性前肢运动的大鼠(ACT)和经过手术但未经训练的大鼠进行Arc原位杂交定量任务的运动要素(控件)。除M1以外,还评估了在眉毛运动区(RMA),初级体感皮层(S1),纹状体(ST)和小脑内的Arc表达。在SRT动物中,受过训练的肢体对侧M1的Arc mRNA水平比同侧同侧高31%(p <0.001),比ACT动物对侧M1高31%(p <0.001),比同侧M1高48%。对照(p <0.001)。 SRT中Arc mRNA表达与两个疗程之间的学习成功呈正相关(r = 0.52; p = 0.026)。对于RMA,S1,ST或小脑,在半球之间或跨行为没有发现Arc mRNA表达的显着差异。由于Arc表达与不同形式的细胞可塑性相关,因此这些发现表明M1 Arc表达与大鼠运动技能学习之间存在联系。

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