Neuropsychology and Functional Neuroimaging Group, Department of Basic Psychology, Clinical Psychology and Psychobiology, Universitat Jaume I, Castelló de la Plana, Spain.
Center for Brain and Cognition, Pompeu Fabra University, Barcelona, Spain.
Neurobiol Learn Mem. 2021 Feb;178:107368. doi: 10.1016/j.nlm.2020.107368. Epub 2020 Dec 19.
Working memory training causes functional adaptations in the brain, which include changes in activation and functional connectivity that remain stable over time. Few studies have investigated gray matter (GM) changes after working memory training, and they have produced heterogeneous results without clarifying the stable effects of training. The present study was designed to test for sustained and transient anatomic changes after only 200 min of working memory training. The voxel-based morphometry technique was used in order to investigate the GM changes produced by a brief single n-back training, immediately and 5 weeks after finishing it. The sample was composed by 59 human participants who underwent MRI scanning and were assigned to either a training group or a passive control group. Results showed sustained GM volume enlargement in the right superior parietal cortex and a transient GM decrease in the right putamen. The brain adaptation in the right superior parietal cortex was stronger in individuals who showed greater improvements in performance. The results provide further evidence that a brief working memory training is able to produce brain plasticity in structures related to the trained task.
工作记忆训练会引起大脑的功能适应性改变,包括激活和功能连接的变化,这些变化会随着时间的推移而保持稳定。很少有研究调查工作记忆训练后的灰质(GM)变化,而且它们产生的结果不一致,没有明确训练的稳定效果。本研究旨在测试仅 200 分钟的工作记忆训练后是否会持续和短暂地出现解剖学变化。我们使用基于体素的形态测量技术来研究短暂的单一 n-back 训练引起的 GM 变化,以及在完成训练后立即和 5 周后的 GM 变化。该样本由 59 名接受 MRI 扫描的人类参与者组成,他们被分配到训练组或被动对照组。结果表明,右侧顶上回的 GM 体积持续增加,右侧豆状核的 GM 短暂减少。在表现有较大改善的个体中,右侧顶上回的大脑适应性更强。研究结果进一步证明,短暂的工作记忆训练能够使与训练任务相关的结构产生大脑可塑性。