Weaver Kurt E, Poliakov Andrew, Novotny Edward J, Olson Jared D, Grabowski Thomas J, Ojemann Jeffrey G
Departments of1Radiology.
8Integrated Brain Imaging Center, University of Washington, Seattle.
J Neurosurg Pediatr. 2018 Feb;21(2):133-140. doi: 10.3171/2017.7.PEDS17269. Epub 2017 Dec 1.
OBJECTIVE The acquisition and refinement of cognitive and behavioral skills during development is associated with the maturation of various brain oscillatory activities. Most developmental investigations have identified distinct patterns of low-frequency electrophysiological activity that are characteristic of various behavioral milestones. In this investigation, the authors focused on the cross-sectional developmental properties of high-frequency spectral power from the brain's default mode network (DMN) during goal-directed behavior. METHODS The authors contrasted regionally specific, time-evolving high gamma power (HGP) in the lateral DMN cortex between 3 young children (age range 3-6 years) and 3 adults by use of electrocorticography (ECoG) recordings over the left perisylvian cortex during a picture-naming task. RESULTS Across all participants, a nearly identical and consistent response suppression of HGP, which is a functional signature of the DMN, was observed during task performance recordings acquired from ECoG electrodes placed over the lateral DMN cortex. This finding provides evidence of relatively early maturation of the DMN. Furthermore, only HGP relative to evoked alpha and beta band power showed this level of consistency across all participants. CONCLUSIONS Regionally specific, task-evoked suppression of the high-frequency components of the cortical power spectrum is established early in brain development, and this response may reflect the early maturation of specific cognitive and/or computational mechanisms.
目的 在发育过程中认知和行为技能的获得与完善与各种脑振荡活动的成熟有关。大多数发育研究已经确定了不同的低频电生理活动模式,这些模式是各种行为里程碑的特征。在本研究中,作者关注在目标导向行为期间大脑默认模式网络(DMN)高频谱功率随时间变化的横断面发育特性。方法 作者通过在左侧颞周皮层进行皮层脑电图(ECoG)记录,对比了3名幼儿(年龄范围3至6岁)和3名成年人在图片命名任务期间外侧DMN皮层区域特异性、随时间变化的高伽马功率(HGP)。结果 在所有参与者中,在放置于外侧DMN皮层的ECoG电极记录的任务执行过程中,观察到HGP几乎相同且一致的反应抑制,这是DMN的一个功能特征。这一发现为DMN相对较早成熟提供了证据。此外,只有相对于诱发的α和β波段功率的HGP在所有参与者中表现出这种一致性水平。结论 皮层功率谱高频成分的区域特异性、任务诱发抑制在大脑发育早期就已确立,这种反应可能反映了特定认知和/或计算机制的早期成熟。