Ge Haitao, Yin Xuntao, Xu Junhai, Tang Yuchun, Han Yan, Xu Wenjian, Pang Zengchang, Meng Haiwei, Liu Shuwei
Research Center for Sectional and Imaging Anatomy, Shandong University School of Medicine, Jinan, Shandong, China.
PLoS One. 2013 Nov 4;8(11):e78831. doi: 10.1371/journal.pone.0078831. eCollection 2013.
It has been widely accepted that attention can be divided into three subnetworks - alerting, orienting and executive control (EC), and the subnetworks of attention are linked to distinct brain regions. However, the association between specific white matter fibers and the subnetworks of attention is not clear enough. Using diffusion tensor imaging (DTI), the white matter connectivity related to the performance of attention was assessed by attention network test (ANT) in 85 healthy adolescents. Tract-based spatial statistics (TBSS) and probabilistic diffusion tractography analysis demonstrated that cerebellothalamic tract was involved in alerting, while orienting depended upon the superior longitudinal fasciculus (SLF). In addition, EC was under the control of anterior corona radiata (ACR). Our findings suggest that different fiber pathways are involved in the three distinct subnetworks of attention. The current study will yield more precise information about the structural substrates of attention function and may aid the efforts to understand the neurophysiology of several attention disorders.
人们普遍认为,注意力可分为三个子网络——警觉、定向和执行控制(EC),且注意力的子网络与不同的脑区相关联。然而,特定白质纤维与注意力子网络之间的关联尚不够明确。利用扩散张量成像(DTI),通过注意力网络测试(ANT)对85名健康青少年中与注意力表现相关的白质连通性进行了评估。基于纤维束的空间统计学(TBSS)和概率性扩散纤维束成像分析表明,小脑丘脑束参与警觉,而定向则依赖于上纵束(SLF)。此外,执行控制受放射冠前部(ACR)的控制。我们的研究结果表明,不同的纤维通路参与了注意力的三个不同子网络。当前的研究将产生有关注意力功能结构基础的更精确信息,并可能有助于理解几种注意力障碍的神经生理学。