Grydeland Håkon, Westlye Lars T, Walhovd Kristine B, Fjell Anders M
Research Group for Lifespan Changes in Brain and Cognition, Department of Psychology, University of Oslo, Oslo, Norway.
Cereb Cortex. 2016 Jun;26(6):2402-10. doi: 10.1093/cercor/bhv065. Epub 2015 Apr 2.
Myelin content of the cerebral cortex likely impacts cognitive functioning, but this notion has scarcely been investigated in vivo in humans. Here we tested for a relationship between intracortical myelin and a direct measure of neural activity in the form of the electrophysiological response error-related negativity (ERN). Using magnetic resonance imaging, myelin mapping was performed in 81 healthy adults aged 40-60 years by means of a T1- and T2-weighted (T1w/T2w) signal intensity ratio approach. Error trials on a version of the Eriksen flanker task triggered the ERN, a negative deflection of the event-related potential reflecting performance monitoring. Compelling evidence from neuroimaging, lesion, and source localization studies indicates that the ERN stems from the cingulate cortex. Vertex-wise analyses across the cingulate demonstrated that increased amplitude of the ERN was related to higher levels of intracortical myelin in the left posterior cingulate cortex. The association was independent of general ability level and subjacent white matter myelin. The results fit the notion that degree of myelin within the posterior cingulate cortex as measured by T1w/T2w signal intensity plays a role in error processing and cognitive control through the relationship with neural activity as measured by ERN amplitude, potentially by facilitating local neural synchronization.
大脑皮层的髓鞘含量可能会影响认知功能,但这一概念在人体活体研究中几乎未被探讨过。在此,我们测试了皮层内髓鞘与以电生理反应错误相关负波(ERN)形式存在的神经活动直接测量指标之间的关系。利用磁共振成像,通过T1加权和T2加权(T1w/T2w)信号强度比方法,对81名年龄在40至60岁之间的健康成年人进行了髓鞘图谱分析。在埃里克森侧翼任务的一个版本中的错误试验引发了ERN,这是一种事件相关电位的负向偏转,反映了对表现的监测。来自神经影像学、病变和源定位研究的有力证据表明,ERN起源于扣带回皮层。对扣带回进行的逐顶点分析表明,ERN振幅的增加与左后扣带回皮层中皮层内髓鞘水平的升高有关。这种关联独立于一般能力水平和下方白质髓鞘。这些结果符合这样一种观点,即通过T1w/T2w信号强度测量的后扣带回皮层内的髓鞘程度,通过与以ERN振幅测量的神经活动之间的关系,可能通过促进局部神经同步,在错误处理和认知控制中发挥作用。