Farthouat Juliane, Franco Ana, Mary Alison, Delpouve Julie, Wens Vincent, Op de Beeck Marc, De Tiège Xavier, Peigneux Philippe
UR2NF - Neuropsychology and Functional Neuroimaging Research Unit at CRCN, Center for Research in Cognition and Neurosciences, Université Libre de Bruxelles, CP191, Avenue F. D. Roosevelt 50, 1050, Brussels, Belgium.
UNI - ULB Neurosciences Institute, Université Libre de Bruxelles, Brussels, Belgium.
Brain Topogr. 2017 Mar;30(2):220-232. doi: 10.1007/s10548-016-0518-y. Epub 2016 Sep 9.
Humans are highly sensitive to statistical regularities in their environment. This phenomenon, usually referred as statistical learning, is most often assessed using post-learning behavioural measures that are limited by a lack of sensibility and do not monitor the temporal dynamics of learning. In the present study, we used magnetoencephalographic frequency-tagged responses to investigate the neural sources and temporal development of the ongoing brain activity that supports the detection of regularities embedded in auditory streams. Participants passively listened to statistical streams in which tones were grouped as triplets, and to random streams in which tones were randomly presented. Results show that during exposure to statistical (vs. random) streams, tritone frequency-related responses reflecting the learning of regularities embedded in the stream increased in the left supplementary motor area and left posterior superior temporal sulcus (pSTS), whereas tone frequency-related responses decreased in the right angular gyrus and right pSTS. Tritone frequency-related responses rapidly developed to reach significance after 3 min of exposure. These results suggest that the incidental extraction of novel regularities is subtended by a gradual shift from rhythmic activity reflecting individual tone succession toward rhythmic activity synchronised with triplet presentation, and that these rhythmic processes are subtended by distinct neural sources.
人类对其环境中的统计规律高度敏感。这种现象通常被称为统计学习,最常使用学习后的行为测量方法进行评估,而这些方法受到缺乏敏感性的限制,并且无法监测学习的时间动态。在本研究中,我们使用脑磁图频率标记反应来研究正在进行的大脑活动的神经来源和时间发展,这种活动支持对听觉流中嵌入的规律的检测。参与者被动地听统计流,其中音调被分组为三联体,以及随机流,其中音调被随机呈现。结果表明,在接触统计(与随机)流期间,反映流中嵌入规律学习的三全音频率相关反应在左辅助运动区和左后颞上沟(pSTS)增加,而音调频率相关反应在右角回和右pSTS减少。三全音频率相关反应在接触3分钟后迅速发展并达到显著水平。这些结果表明,新规律的偶然提取是由从反映单个音调连续的节律活动向与三联体呈现同步的节律活动的逐渐转变所支撑的,并且这些节律过程由不同的神经来源所支撑。