Davey James, Rueschemeyer Shirley-Ann, Costigan Alison, Murphy Nik, Krieger-Redwood Katya, Hallam Glyn, Jefferies Elizabeth
Department of Psychology and York Neuroimaging Centre, University of York, UK.
Department of Psychology and York Neuroimaging Centre, University of York, UK.
Brain Lang. 2015 Mar;142:24-35. doi: 10.1016/j.bandl.2015.01.002. Epub 2015 Feb 3.
Executive-semantic control and action understanding appear to recruit overlapping brain regions but existing evidence from neuroimaging meta-analyses and neuropsychology lacks spatial precision; we therefore manipulated difficulty and feature type (visual vs. action) in a single fMRI study. Harder judgements recruited an executive-semantic network encompassing medial and inferior frontal regions (including LIFG) and posterior temporal cortex (including pMTG). These regions partially overlapped with brain areas involved in action but not visual judgements. In LIFG, the peak responses to action and difficulty were spatially identical across participants, while these responses were overlapping yet spatially distinct in posterior temporal cortex. We propose that the co-activation of LIFG and pMTG allows the flexible retrieval of semantic information, appropriate to the current context; this might be necessary both for semantic control and understanding actions. Feature selection in difficult trials also recruited ventral occipital-temporal areas, not implicated in action understanding.
执行语义控制和动作理解似乎会激活重叠的脑区,但神经影像学荟萃分析和神经心理学的现有证据缺乏空间精确性;因此,我们在一项功能磁共振成像(fMRI)研究中对难度和特征类型(视觉与动作)进行了操控。更难的判断会激活一个执行语义网络,该网络包括内侧和额下回区域(包括左额下回)以及颞叶后部皮质(包括颞中回后部)。这些区域与参与动作但不参与视觉判断的脑区部分重叠。在左额下回,参与者对动作和难度的峰值反应在空间上是相同的,而这些反应在颞叶后部皮质中虽有重叠但在空间上是不同的。我们提出,左额下回和颞中回后部的共同激活允许灵活检索与当前情境相符的语义信息;这对于语义控制和动作理解可能都是必要的。在困难试验中的特征选择还激活了枕颞腹侧区域,该区域与动作理解无关。