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人类大脑中依赖睡眠的运动记忆可塑性。

Sleep-dependent motor memory plasticity in the human brain.

作者信息

Walker M P, Stickgold R, Alsop D, Gaab N, Schlaug G

机构信息

Sleep and Neuroimaging Laboratory, FD/Feldberg 862, Department of Psychiatry, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA 02115, USA.

出版信息

Neuroscience. 2005;133(4):911-7. doi: 10.1016/j.neuroscience.2005.04.007.

Abstract

Growing evidence indicates a role for sleep in off-line memory processing, specifically in post-training consolidation. In humans, sleep has been shown to trigger overnight learning on a motor-sequence memory task, while equivalent waking periods produce no such improvement. But while the behavioral characteristics of sleep-dependent motor learning become increasingly well characterized, the underlying neural basis remains unknown. Here we present functional magnetic resonance imaging data demonstrating a change in the representation of a motor memory after a night of sleep. Subjects trained on a motor-skill memory and 12 hours later, after either sleep or wake, were retested during functional magnetic resonance imaging. Following sleep relative to wake, regions of increased activation were expressed in the right primary motor cortex, medial prefrontal lobe, hippocampus and left cerebellum; changes that can support faster motor output and more precise mapping of key-press movements. In contrast, signal decreases were identified in parietal cortices, the left insular cortex, temporal pole and fronto-polar region, reflecting a reduced need for conscious spatial monitoring and a decreased emotional task burden. This evidence of an overnight, systems-level change in the representation of a motor memory holds important implications for acquiring real-life skills and in clinical rehabilitation following brain trauma, such as stroke.

摘要

越来越多的证据表明睡眠在离线记忆处理中发挥作用,特别是在训练后巩固方面。在人类中,睡眠已被证明能在运动序列记忆任务中引发夜间学习,而相同时长的清醒期则不会产生这种改善。虽然依赖睡眠的运动学习的行为特征越来越得到充分描述,但其潜在的神经基础仍然未知。在此,我们展示了功能磁共振成像数据,证明了一夜睡眠后运动记忆表征的变化。对运动技能记忆进行训练的受试者,在12小时后,分别在睡眠或清醒状态下,于功能磁共振成像期间再次接受测试。与清醒相比,睡眠后,右侧初级运动皮层、内侧前额叶、海马体和左侧小脑的激活区域增加;这些变化有助于更快的运动输出以及更精确地映射按键动作。相反,在顶叶皮层、左侧岛叶皮层、颞极和额极区域发现信号减少,这反映出对有意识空间监测的需求降低以及情感任务负担减轻。这种运动记忆表征在一夜之间发生系统水平变化的证据,对于掌握现实生活技能以及脑外伤(如中风)后的临床康复具有重要意义。

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