Khateb A, Annoni J M, Landis T, Pegna A J, Custodi M C, Fonteneau E, Morand S M, Michel C M
Functional Brain Mapping Laboratory, Neurology Clinic, Geneva University Hospital, Geneva, Switzerland.
Int J Psychophysiol. 1999 Jun;32(3):215-31. doi: 10.1016/s0167-8760(99)00017-3.
There is an ongoing debate in cognitive neuroscience about the time course and the functional independence of the different processes involved in encoding written language material. New data indicate very fast and highly parallel language analysis networks in the brain. Here we demonstrate a methodological approach to study the temporal dynamics of this network by searching for time periods where different task demands emphasize different aspects of the network. Multi-channel event related potentials (ERPs) were recorded during a semantic and a phonological reading task from 14 healthy subjects. Signals were analyzed exclusively on the basis of the spatial configuration of the electric potential distributions (ERP maps), since differences in these spatial patterns directly reflect changes in the configuration of the active sources in the brain. This analysis did not reveal any differences of the evoked brain electric fields between the two tasks up to 280 ms post-stimulus. The ERP maps then differed for a brief period between 280 and 380 ms, before they were similar again. The analysis of the maps using a global linear localization procedure revealed a network of areas, active in both tasks, that mainly involved the left postero-temporal and left antero-temporal regions. The left posterior activation was found already around 100 ms post-stimulus, indicating that language-specific functions appear early in time. We therefore conclude that phonological and semantic processing are essentially performed in both tasks and that only late decision-related processes influence the relative strength of activity of the different modules in the complex language network.
认知神经科学领域正在就书面语言材料编码过程中不同进程的时间进程和功能独立性展开争论。新数据表明大脑中存在非常快速且高度并行的语言分析网络。在此,我们展示一种方法,通过寻找不同任务需求强调网络不同方面的时间段,来研究该网络的时间动态。在14名健康受试者进行语义阅读任务和语音阅读任务期间,记录了多通道事件相关电位(ERP)。信号仅基于电位分布的空间配置(ERP图)进行分析,因为这些空间模式的差异直接反映了大脑中活跃源配置的变化。该分析未发现刺激后280毫秒内两个任务诱发的脑电场有任何差异。然后,ERP图在280至380毫秒的短暂时间段内有所不同,之后又再次相似。使用全局线性定位程序对这些图进行分析,揭示了一个在两个任务中均活跃的区域网络,主要涉及左后颞叶和左前颞叶区域。在刺激后约100毫秒就发现了左后颞叶的激活,这表明特定语言功能在早期就已出现。因此,我们得出结论,语音和语义处理在两个任务中基本都有进行,并且只有与后期决策相关的进程会影响复杂语言网络中不同模块活动的相对强度。