Levelt W J, Praamstra P, Meyer A S, Helenius P, Salmelin R
Max Planck Institute for Psycholinguistics, PO Box 310, 6500 AH Nijmegan, NL.
J Cogn Neurosci. 1998 Sep;10(5):553-67. doi: 10.1162/089892998562960.
The purpose of this study was to relate a psycholinguistic processing model of picture naming to the dynamics of cortical activation during picture naming. The activation was recorded from eight Dutch subjects with a whole-head neuromagnetometer. The processing model, based on extensive naming latency studies, is a stage model. In preparing a picture"s name, the speaker performs a chain of specific operations. They are, in this order, computing the visual percept, activating an appropriate lexical concept, selecting the target word from the mental lexicon, phonological encoding, phonetic encoding, and initiation of articulation. The time windows for each of these operations are reasonably well known and could be related to the peak activity of dipole sources in the individual magnetic response patterns. The analyses showed a clear progression over these time windows from early occipital activation, via parietal and temporal to frontal activation. The major specific findings were that (1) a region in the left posterior temporal lobe, agreeing with the location of Wernicke"s area, showed prominent activation starting about 200 msec after picture onset and peaking at about 350 msec (i.e., within the stage of phonological encoding), and (2) a consistent activation was found in the right parietal cortex, peaking at about 230 msec after picture onset, thus preceding and partly overlapping with the left temporal response. An interpretation in terms of the management of visual attention is proposed.
本研究的目的是将图片命名的心理语言学加工模型与图片命名过程中皮层激活的动态变化联系起来。使用全头式神经磁强计记录了8名荷兰受试者的激活情况。基于广泛的命名潜伏期研究,该加工模型是一个阶段模型。在准备图片的名称时,说话者会执行一系列特定操作。按此顺序,它们分别是计算视觉感知、激活适当的词汇概念、从心理词库中选择目标词、语音编码、音素编码以及启动发音。这些操作中的每一个的时间窗口都相当为人所知,并且可以与个体磁响应模式中偶极子源的峰值活动相关联。分析表明,在这些时间窗口内,从早期枕叶激活,经顶叶和颞叶到额叶激活有明显的进展。主要的具体发现是:(1)左后颞叶的一个区域,与韦尼克区的位置一致,在图片呈现后约200毫秒开始显示出显著激活,并在约350毫秒达到峰值(即在语音编码阶段内),以及(2)在右顶叶皮层发现了一致的激活,在图片呈现后约230毫秒达到峰值,因此先于左颞叶反应并与之部分重叠。提出了一种基于视觉注意管理的解释。