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首页> 外文期刊>Brain topography >Absolute Power Spectral Density Changes in the Magnetoencephalographic Activity During the Transition from Childhood to Adulthood
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Absolute Power Spectral Density Changes in the Magnetoencephalographic Activity During the Transition from Childhood to Adulthood

机译:从童年到成年期间的过渡期间磁性电谱密度发生的绝对功率谱密度变化

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The aim of this study was to define the pattern of reduction in absolute power spectral density (PSD) of magnetoencephalography (MEG) signals throughout development. Specifically, we wanted to explore whether the human skull's high permeability for electromagnetic fields would allow us to question whether the pattern of absolute PSD reduction observed in the human electroencephalogram is due to an increase in the skull's resistive properties with age. Furthermore, the topography of the MEG signals during maturation was explored, providing additional insights about the areas and brain rhythms related to late maturation in the human brain. To attain these goals, spontaneous MEG activity was recorded from 148 sensors in a sample of 59 subjects divided into three age groups: children/adolescents (7-14 years), young adults (17-20 years) and adults (21-26 years). Statistical testing was carried out by means of an analysis of variance (ANOVA), with "age group" as between-subject factor and "sensor group" as within-subject factor. Additionally, correlations of absolute PSD with age were computed to assess the influence of age on the spectral content of MEG signals. Results showed a broadband PSD decrease in frontal areas, which suggests the late maturation of this region, but also a mild increase in high frequency PSD with age in posterior areas. These findings suggest that the intensity of the neural sources during spontaneous brain activity decreases with age, which may be related to synaptic pruning.
机译:本研究的目的是定义在整个发育中的磁性脑图(MEG)信号的绝对功率谱密度(PSD)的降低模式。具体而言,我们想探索人颅骨是否对电磁场的高渗透性允许我们质疑在人脑电图中观察到的绝对PSD减少模式是由于颅骨的电阻性能随着年龄的增长而增加。此外,探索了MEG信号在成熟期间的地形,为人脑中的晚期成熟有关的区域和脑节律提供了额外的见解。为了获得这些目标,从59名受试者的样本中的148个传感器记录自发的MEG活动:儿童/青少年(7-14岁),年轻人(17-20岁)和成人(21-26岁) )。统计测试通过分析方差(ANOVA)进行,具有“年龄组”,如受试者因子和“传感器组”,如受试者内部因子。另外,计算具有年龄的绝对PSD的相关性以评估年龄对MEG信号的光谱含量的影响。结果表明,正面区域的宽带PSD减少,这表明该地区的晚期成熟,而且在后面的高频PSD中的温和增加。这些发现表明,自发性脑活动期间神经源的强度随着年龄的增长而降低,这可能与突触修剪有关。

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