Lippé S, Roy M-S, Perchet C, Lassonde M
Centre de recherche, Hôpital Sainte-Justine, Montréal, QC, Canada.
Cereb Cortex. 2007 Jan;17(1):100-7. doi: 10.1093/cercor/bhj130. Epub 2006 Feb 8.
The development of noninvasive techniques for the assessment of functional brain maturation is critical. The present study analyzed 63 babies' and children's (27 days to 5.5 years) cerebral responses to a pattern-reversal visual stimulation using high-density (128 electrodes) electrophysiological recordings. Developmental data were further compared with those of young adults (n = 16). Tremendous changes in pattern visual evoked potentials (pVEPs) morphology were observed between 7 and 24 months characterized by the emergence of negative components labeled "N70" and "N145" and the reduction of the P100 amplitude. The adult pattern of response appears from 24 months onward. Spectral density values show an increase of higher frequencies with age. Coherence values show a reduction between 3 and 23 months of age as well as a further increase toward adulthood between areas implicated in visual processing. These results are discussed in light of developmental features such as synaptogenesis, myelination, and neuronal networks refinement.
开发用于评估大脑功能成熟度的无创技术至关重要。本研究使用高密度(128电极)电生理记录分析了63名婴儿和儿童(27天至5.5岁)对模式反转视觉刺激的大脑反应。将发育数据与年轻成年人(n = 16)的数据进行了进一步比较。在7至24个月之间观察到模式视觉诱发电位(pVEP)形态发生了巨大变化,其特征是出现了标记为“N70”和“N145”的负成分以及P100波幅降低。从24个月起出现成人反应模式。频谱密度值显示随着年龄增长高频增加。相干值显示在3至23个月龄之间降低,以及在涉及视觉处理的区域之间向成年期进一步增加。根据诸如突触形成、髓鞘形成和神经网络细化等发育特征对这些结果进行了讨论。