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练习结构通过增加运动前网络中的同步性来改善无意识的过渡记忆。

Practice structure improves unconscious transitional memories by increasing synchrony in a premotor network.

作者信息

Song Sunbin, Gotts Stephen J, Dayan Eran, Cohen Leonardo G

机构信息

National Institutes of Health, Bethesda, MD.

出版信息

J Cogn Neurosci. 2015 Aug;27(8):1503-12. doi: 10.1162/jocn_a_00796. Epub 2015 Mar 11.

Abstract

Sequence learning relies on formation of unconscious transitional and conscious ordinal memories. The influence of practice type on formation of these memories that compose skill and systems level neural substrates is not known. Here, we studied learning of transitional and ordinal memories in participants trained on motor sequences while scanned using fMRI. Practice structure was varied or grouped (mixing or grouping sequences during training, respectively). Memory was assessed 30 min and 1 week later. Varied practice improved transitional memory and enhanced coupling of the dorsal premotor cortex with thalamus, cerebellum, and lingual and cingulate regions and greater transitional memory correlated with this coupling. Thus, varied practice improves unconscious transitional memories in proportion to coupling within a cortico-subcortical network linked to premotor cortex. This result indicates that practice structure influences unconscious transitional memory formation and identifies underlying systems level mechanisms.

摘要

序列学习依赖于无意识的过渡性记忆和有意识的顺序记忆的形成。练习类型对构成技能和系统水平神经基质的这些记忆形成的影响尚不清楚。在这里,我们对在进行运动序列训练的参与者进行了过渡性和顺序性记忆学习的研究,同时使用功能磁共振成像(fMRI)进行扫描。练习结构分为变化型或分组型(分别在训练期间混合或分组序列)。在30分钟和1周后评估记忆。变化型练习改善了过渡性记忆,并增强了背侧运动前区皮质与丘脑、小脑以及舌回和扣带区域的耦合,并且更强的过渡性记忆与这种耦合相关。因此,变化型练习与运动前区皮质相连的皮质-皮质下网络内的耦合成比例地改善无意识的过渡性记忆。这一结果表明练习结构会影响无意识过渡性记忆的形成,并确定了潜在的系统水平机制。

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