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Skill learning strengthens cortical representations of motor sequences

机译:技能学习可增强运动序列的皮层表现

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摘要

Motor-skill learning can be accompanied by both increases and decreases in brain activity. Increases may indicate neural recruitment, while decreases may imply that a region became unimportant or developed a more efficient representation of the skill. These overlapping mechanisms make interpreting learning-related changes of spatially averaged activity difficult. Here we show that motor-skill acquisition is associated with the emergence of highly distinguishable activity patterns for trained movement sequences, in the absence of average activity increases. During functional magnetic resonance imaging, participants produced either four trained or four untrained finger sequences. Using multivariate pattern analysis, both untrained and trained sequences could be discriminated in primary and secondary motor areas. However, trained sequences were classified more reliably, especially in the supplementary motor area. Our results indicate skill learning leads to the development of specialized neuronal circuits, which allow the execution of fast and accurate sequential movements without average increases in brain activity.>DOI:
机译:运动技能学习可以伴有大脑活动的增加和减少。增加可能表示神经募集,而减少可能意味着某个区域变得不重要或发展出对该技能更有效的表示。这些重叠的机制使解释与学习相关的空间平均活动变化变得困难。在这里,我们表明,在没有平均活动增加的情况下,运动技能的获取与受过训练的运动序列的高度可区分的活动模式的出现有关。在功能性磁共振成像过程中,参与者产生了四个训练过的或四个未经训练的手指序列。使用多元模式分析,可以在初级和次级运动领域中区分未训练序列和训练序列。但是,对训练序列进行了更可靠的分类,尤其是在辅助运动领域。我们的结果表明,技能学习导致了专门的神经元回路的发展,这使得执行快速准确的顺序运动而不会平均增加脑部活动。> DOI:

著录项

  • 期刊名称 eLife
  • 作者单位
  • 年(卷),期 2013(2),-1
  • 年度 2013
  • 页码 e00801
  • 总页数 20
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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