Brain Imaging Centre, Research Centre for Natural Sciences, Hungarian Academy of Sciences, Budapest, Hungary; Department of Cognitive Science, Budapest University of Technology and Economics, Budapest, Hungary.
Brain Imaging Centre, Research Centre for Natural Sciences, Hungarian Academy of Sciences, Budapest, Hungary; Institute of Psychology, Eötvös Loránd University, Budapest, Hungary.
Int J Psychophysiol. 2019 Jul;141:45-55. doi: 10.1016/j.ijpsycho.2019.05.005. Epub 2019 May 9.
Entrainment to periodic acoustic stimuli has been found to relate both to the auditory and motor cortices, and it could be influenced by the maturity of these brain regions. However, existing research in this topic provides data about different oscillatory brain activities in different age groups with different musical background. In order to obtain a more coherent picture and examine early manifestations of entrainment, we assessed brain oscillations at multiple time scales (beta: 15-25 Hz, gamma: 28-48 Hz) and in steady state evoked potentials (SS-EPs in short) in 6-7-year-old children with no musical background right at the start of primary school before they learnt to read. Our goal was to exclude the effect of music training and reading, since previous studies have shown that sensorimotor entrainment (movement synchronization to the beat) is related to musical and reading abilities. We found evidence for endogenous anticipatory processing in the gamma band related to meter perception, and stimulus-related frequency specific responses. However, we did not find evidence for an interaction between auditory and motor networks, which suggests that endogenous mechanisms related to auditory processing may mature earlier than those that underlie motor actions, such as sensorimotor synchronization.
对周期性声刺激的顺应已被发现与听觉和运动皮层有关,并且可能受到这些大脑区域成熟度的影响。然而,该主题的现有研究提供了有关不同年龄组具有不同音乐背景的不同振荡脑活动的数据。为了获得更连贯的图像并检查顺应的早期表现,我们在 6-7 岁没有音乐背景的儿童开始上小学之前就评估了他们的大脑振荡,此时他们还没有开始学习阅读。我们的目标是排除音乐训练和阅读的影响,因为先前的研究表明,感觉运动顺应(随着节奏同步运动)与音乐和阅读能力有关。我们发现了与节奏感知有关的伽马波段内与预期相关的内源性处理的证据,以及与刺激相关的特定频率反应。然而,我们没有发现听觉和运动网络之间相互作用的证据,这表明与听觉处理有关的内源性机制可能比那些构成运动动作(例如感觉运动同步)的机制更早成熟。