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用于获取和回忆视觉运动适应性的大脑表征。

Brain representations for acquiring and recalling visual-motor adaptations.

作者信息

Bédard Patrick, Sanes Jerome N

机构信息

Department of Neuroscience, Brown University, Providence, RI 02912 USA.

Department of Neuroscience, Brown University, Providence, RI 02912 USA; Institute for Brain Science, Brown University, Providence, RI 02912 USA; Center for Neurorestoration and Neurotechnology, Providence Veterans Administration Medical Center, Providence, RI 02908 USA.

出版信息

Neuroimage. 2014 Nov 1;101:225-35. doi: 10.1016/j.neuroimage.2014.07.009. Epub 2014 Jul 12.

Abstract

Humans readily learn and remember new motor skills, a process that likely underlies adaptation to changing environments. During adaptation, the brain develops new sensory-motor relationships, and if consolidation occurs, a memory of the adaptation can be retained for extended periods. Considerable evidence exists that multiple brain circuits participate in acquiring new sensory-motor memories, though the networks engaged in recalling these and whether the same brain circuits participate in their formation and recall have less clarity. To address these issues, we assessed brain activation with functional MRI while young healthy adults learned and recalled new sensory-motor skills by adapting to world-view rotations of visual feedback that guided hand movements. We found cerebellar activation related to adaptation rate, likely reflecting changes related to overall adjustments to the visual rotation. A set of parietal and frontal regions, including inferior and superior parietal lobules, premotor area, supplementary motor area and primary somatosensory cortex, exhibited non-linear learning-related activation that peaked in the middle of the adaptation phase. Activation in some of these areas, including the inferior parietal lobule, intra-parietal sulcus and somatosensory cortex, likely reflected actual learning, since the activation correlated with learning after-effects. Lastly, we identified several structures having recall-related activation, including the anterior cingulate and the posterior putamen, since the activation correlated with recall efficacy. These findings demonstrate dynamic aspects of brain activation patterns related to formation and recall of a sensory-motor skill, such that non-overlapping brain regions participate in distinctive behavioral events.

摘要

人类能够轻松学习并记住新的运动技能,这一过程可能是适应不断变化的环境的基础。在适应过程中,大脑会形成新的感觉运动关系,如果发生巩固,这种适应的记忆就能长期保留。有大量证据表明,多个脑回路参与获取新的感觉运动记忆,然而,参与回忆这些记忆的网络以及相同的脑回路是否参与其形成和回忆尚不太明确。为了解决这些问题,我们在年轻健康成年人通过适应引导手部运动的视觉反馈的世界观旋转来学习和回忆新的感觉运动技能时,用功能磁共振成像评估了大脑激活情况。我们发现小脑激活与适应速度有关,可能反映了与视觉旋转的整体调整相关的变化。一组顶叶和额叶区域,包括顶下小叶和顶上小叶、运动前区、辅助运动区和初级体感皮层,表现出与学习相关的非线性激活,在适应阶段中期达到峰值。这些区域中的一些区域,包括顶下小叶、顶内沟和体感皮层的激活,可能反映了实际学习情况,因为这种激活与学习后效应相关。最后,我们确定了几个具有与回忆相关激活的结构,包括前扣带回和后壳核,因为这种激活与回忆效果相关。这些发现证明了与感觉运动技能的形成和回忆相关的大脑激活模式的动态方面,即不重叠的脑区参与不同的行为事件。

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