Institute of Cognitive Neuroscience and Psychology, Research Centre for Natural Sciences, P.O. Box 286, Budapest, 1519, Hungary.
Department of Cognitive Science, Faculty of Natural Sciences, Budapest University of Technology and Economics, Budapest, Hungary.
Sci Rep. 2022 Jun 9;12(1):9541. doi: 10.1038/s41598-022-13708-x.
With increasing life expectancy and active aging, it becomes crucial to investigate methods which could compensate for generally detected cognitive aging processes. A promising candidate is adaptive cognitive training, during which task difficulty is adjusted to the participants' performance level to enhance the training and potential transfer effects. Measuring intrinsic brain activity is suitable for detecting possible distributed training-effects since resting-state dynamics are linked to the brain's functional flexibility and the effectiveness of different cognitive processes. Therefore, we investigated if adaptive task-switching training could modulate resting-state neural dynamics in younger (18-25 years) and older (60-75 years) adults (79 people altogether). We examined spectral power density on resting-state EEG data for measuring oscillatory activity, and multiscale entropy for detecting intrinsic neural complexity. Decreased coarse timescale entropy and lower frequency band power as well as increased fine timescale entropy and higher frequency band power revealed a shift from more global to local information processing with aging before training. However, cognitive training modulated these age-group differences, as coarse timescale entropy and lower frequency band power increased from pre- to post-training in the old-training group. Overall, our results suggest that cognitive training can modulate neural dynamics even when measured outside of the trained task.
随着预期寿命的延长和积极老龄化的到来,研究能够弥补普遍发现的认知老化过程的方法变得至关重要。一种有前途的候选方法是适应性认知训练,在这种训练中,任务难度根据参与者的表现水平进行调整,以提高训练效果和潜在的转移效果。测量内在大脑活动适合检测可能的分布式训练效果,因为静息态动态与大脑的功能灵活性和不同认知过程的有效性有关。因此,我们研究了适应性任务转换训练是否可以调节年轻(18-25 岁)和年长(60-75 岁)成年人(总共 79 人)的静息态神经动力学。我们检查了静息态 EEG 数据的频谱功率密度以测量振荡活动,并检查了多尺度熵以检测内在神经复杂性。在训练前,与年龄相关的粗时间尺度熵和较低频带功率降低以及细时间尺度熵和较高频带功率增加表明信息处理从更全局到局部的转变。然而,认知训练调节了这些年龄组之间的差异,因为在老年训练组中,从训练前到训练后,粗时间尺度熵和较低频带功率增加。总的来说,我们的结果表明,即使在训练任务之外进行测量,认知训练也可以调节神经动力学。