Lovrich D, Novick B, Vaughan H G
Albert Einstein College of Medicine, Rose F. Kennedy Center for Research in Mental Retardation and Human Development, Bronx, NY 10461.
Electroencephalogr Clin Neurophysiol. 1988 Jan-Feb;71(1):40-54. doi: 10.1016/0168-5597(88)90018-4.
The topography of auditory event-related potentials (ERPs) was examined during 3 kinds of tasks: selection of a specified real word or nonsense syllable from a list; simple detection of each of the same stimuli without discrimination; and classification of a set of words according to a specified semantic category. The potentials that were associated with the additional processing required by the discriminative tasks were disclosed by subtracting the wave forms obtained in the detection condition from those obtained during discriminative performance. Difference wave forms were also derived between the semantic classification and verbal discriminative ERP to delineate the changes associated with the extraction of word meaning. The topography of the ERP associated with stimulus detection was comparable to that found in previous studies of evoked potentials to non-speech stimuli. This distribution was consistent with 2 cortical generators, one within the supratemporal plane and the other on the lateral surface of the superior temporal gyrus. When discriminative performance was required on the basis of acoustic stimulus properties, the topography of the difference wave form that reflected this discriminative processing extended more posteriorly over temporal cortex. Semantic processing elicited a further posterior extension of ERP components by 330 msec after stimulus onset, as well as longer latency potentials that were not present in the verbal selection task. These differences imply that a more extensive portion of language cortex is engaged in semantic classification than in verbal identification.
在三种任务过程中对听觉事件相关电位(ERP)的地形进行了检查:从列表中选择指定的实词或无意义音节;对相同刺激进行简单检测而不进行区分;以及根据指定的语义类别对一组单词进行分类。通过从辨别任务期间获得的波形中减去在检测条件下获得的波形,揭示了与辨别任务所需的额外处理相关的电位。还在语义分类和言语辨别ERP之间导出了差异波形,以描绘与词义提取相关的变化。与刺激检测相关的ERP地形与先前对非言语刺激诱发电位的研究中发现的地形相当。这种分布与两个皮质发生器一致,一个在颞上平面内,另一个在颞上回的外侧表面。当基于声学刺激特性需要辨别性能时,反映这种辨别处理的差异波形的地形在颞叶皮质上更向后延伸。语义处理在刺激开始后330毫秒引起ERP成分进一步向后延伸,以及言语选择任务中不存在的更长潜伏期电位。这些差异意味着与言语识别相比,语言皮质的更广泛部分参与了语义分类。