Nugiel Tehila, Alm Kylie H, Olson Ingrid R
Department of Psychology, Temple University, 1701 N. 13th Street, Philadelphia, PA, 19122, USA.
Cogn Affect Behav Neurosci. 2016 Dec;16(6):1003-1016. doi: 10.3758/s13415-016-0448-x.
In everyday conversation, we make many rapid choices between competing concepts and words in order to convey our intent. This process is termed semantic control, and it is thought to rely on information transmission between a distributed semantic store in the temporal lobes and a more discrete region, optimized for retrieval and selection, in the left inferior frontal gyrus. Here, we used diffusion tensor imaging in a group of neurologically normal young adults to investigate the relationship between semantic control and white matter tracts that have been implicated in semantic memory retrieval. Participants completed a verb generation task that taps semantic control (Snyder & Munakata, 2008; Snyder et al., 2010) and underwent a diffusion imaging scan. Deterministic tractography was performed to compute indices representing the microstructural properties of the inferior fronto-occipital fasciculus (IFOF), the uncinate fasciculus (UF), and the inferior longitudinal fasciculus (ILF). Microstructural measures of the UF failed to predict semantic control performance. However, there was a significant relationship between microstructure of the left IFOF and ILF and individual differences in semantic control. Our findings support the view put forth by Duffau (2013) that the IFOF is a key structural pathway in semantic retrieval.
在日常对话中,我们会在相互竞争的概念和词汇之间迅速做出许多选择,以便传达我们的意图。这个过程被称为语义控制,人们认为它依赖于颞叶中分布式语义存储与左额下回中一个更离散的区域(为检索和选择而优化)之间的信息传递。在这里,我们对一组神经功能正常的年轻人使用了扩散张量成像,以研究语义控制与涉及语义记忆检索的白质束之间的关系。参与者完成了一项涉及语义控制的动词生成任务(斯奈德和宗像,2008年;斯奈德等人,2010年),并接受了扩散成像扫描。进行了确定性纤维束成像,以计算代表额枕下束(IFOF)、钩束(UF)和下纵束(ILF)微观结构特性的指标。UF的微观结构测量未能预测语义控制表现。然而,左IFOF和ILF的微观结构与语义控制的个体差异之间存在显著关系。我们的研究结果支持了迪福(2013年)提出的观点,即IFOF是语义检索中的关键结构通路。