Laboratory for Psychological Research, Pázmány Péter Catholic University, 1 Mikszáth Square, Budapest, 1088, Hungary.
Semmelweis University Doctoral School, Division of Mental Health Sciences, 26 Üllői road, Budapest, 1085, Hungary.
Adv Sci (Weinh). 2024 Jun;11(21):e2308364. doi: 10.1002/advs.202308364. Epub 2024 Mar 15.
Adolescence is a timed process with an onset, tempo, and duration. Nevertheless, the temporal dimension, especially the pace of maturation, remains an insufficiently studied aspect of developmental progression. The primary objective is to estimate the precise influence of pubertal maturational tempo on the configuration of associative brain regions. To this end, the connection between maturational stages and the level of hierarchical organization of large-scale brain networks in 12-13-year-old females is analyzed. Skeletal maturity is used as a proxy for pubertal progress. The degree of maturity is defined by the difference between bone age and chronological age. To assess the level of hierarchical organization in the brain, the temporal dynamic of closed eye resting state high-density electroencephalography (EEG) in the alpha frequency range is analyzed. Different levels of hierarchical order are captured by the measured asymmetry in the directionality of information flow between different regions. The calculated EEG-based entropy production of participant groups is then compared with accelerated, average, and decelerated maturity. Results indicate that an average maturational trajectory optimally aligns with cerebral hierarchical order, and both accelerated and decelerated timelines result in diminished cortical organization. This suggests that a "Goldilocks rule" of brain development is favoring a particular maturational tempo.
青春期是一个具有起始、速度和持续时间的时间过程。然而,时间维度,特别是成熟的速度,仍然是发育进程中研究不足的一个方面。主要目的是估计青春期成熟速度对关联脑区结构的精确影响。为此,分析了 12-13 岁女性青春期成熟阶段与大脑大规模网络层次组织水平之间的关系。骨骼成熟度被用作青春期进展的替代指标。成熟度的程度由骨龄和实际年龄之间的差异来定义。为了评估大脑的层次组织水平,分析了闭眼静息状态下高密度脑电图(EEG)在 alpha 频率范围内的时间动态。通过测量不同区域之间信息流方向的不对称性来捕捉不同层次的组织水平。然后将基于 EEG 的参与者组熵产生与加速、平均和减速成熟进行比较。结果表明,平均成熟轨迹与大脑的层次组织最佳匹配,而加速和减速的时间线都会导致皮质组织减少。这表明大脑发育存在“金发姑娘规则”,即存在一个特定的最佳成熟速度。