Department of Psychology, University of Pennsylvania, Philadelphia, PA, USA.
Department of Psychology, University of Pennsylvania, Philadelphia, PA, USA.
Dev Cogn Neurosci. 2023 Aug;62:101270. doi: 10.1016/j.dcn.2023.101270. Epub 2023 Jun 16.
Myelination is a key developmental process that promotes rapid and efficient information transfer. Myelin also stabilizes existing brain networks and thus may constrain neuroplasticity, defined here as the brain's potential to change in response to experiences rather than the canonical definition as the process of change. Characterizing individual differences in neuroplasticity may shed light on mechanisms by which early experiences shape learning, brain and body development, and response to interventions. The T1-weighted/T2-weighted (T1w/T2w) MRI signal ratio is a proxy measure of cortical microstructure and thus neuroplasticity. Here, in pre-registered analyses, we investigated individual differences in T1w/T2w ratios in children (ages 4-10, n = 157). T1w/T2w ratios were positively associated with age within early-developing sensorimotor and attention regions. We also tested whether socioeconomic status, cognition (crystallized knowledge or fluid reasoning), and biological age (as measured with molar eruption) were related to T1w/T2w signal but found no significant effects. Associations among T1w/T2w ratios, early experiences, and cognition may emerge later in adolescence and may not be strong enough to detect in moderate sample sizes.
髓鞘形成是促进快速、高效信息传递的关键发育过程。髓鞘还稳定了现有的大脑网络,从而可能限制神经可塑性,这里将神经可塑性定义为大脑对经验做出反应而改变的潜力,而不是经典定义为改变的过程。描述神经可塑性的个体差异可能有助于揭示早期经验塑造学习、大脑和身体发育以及对干预措施的反应的机制。T1 加权/T2 加权(T1w/T2w)MRI 信号比是皮质微观结构和神经可塑性的替代测量指标。在这里,在预先注册的分析中,我们研究了儿童(年龄 4-10 岁,n=157)的 T1w/T2w 比值的个体差异。T1w/T2w 比值与早期发育的感觉运动和注意力区域内的年龄呈正相关。我们还测试了社会经济地位、认知(晶体知识或流体推理)和生物年龄(通过磨牙萌出测量)是否与 T1w/T2w 信号相关,但未发现显著影响。T1w/T2w 比值、早期经验和认知之间的关联可能在青少年后期出现,并且在中等样本量中可能不够强而无法检测到。