Praamstra P, Stegeman D F
Institute of Neurology, University of Nijmegen, The Netherlands.
Electroencephalogr Clin Neurophysiol. 1992 Jan;82(1):67-80. doi: 10.1016/0013-4694(92)90184-j.
Event-related potential (ERP) studies on auditory selective attention have suggested that the neuronal traces underlying the mismatch negativity (MMN) develop separately for left and right ear inputs. We investigated whether this feature of the MMN could be exploited to activate the MMN generators in each hemisphere independently. Given the location of the MMN sources, this would allow separate assessment of left and right hemisphere auditory cortical structures. The MMN was elicited in a dichotic oddball paradigm using stimuli and conditions of stimulation that should optimize transmission of left and right ear stimuli to the contralateral auditory cortices. The MMN demonstrated no interhemispheric asymmetries, indicating that the bilateral MMN generators were symmetrically involved. The results of a supplementary experiment provide evidence for the simultaneous existence of multiple traces for MMN generation.
关于听觉选择性注意的事件相关电位(ERP)研究表明,失匹配负波(MMN)背后的神经元痕迹是针对左耳和右耳输入分别形成的。我们研究了是否可以利用MMN的这一特征来独立激活每个半球的MMN发生器。鉴于MMN源的位置,这将允许对左右半球听觉皮层结构进行单独评估。在双耳分听Oddball范式中诱发MMN,所使用的刺激和刺激条件应能优化左耳和右耳刺激向对侧听觉皮层的传递。MMN未表现出半球间不对称,表明双侧MMN发生器对称参与。一项补充实验的结果为MMN产生的多个痕迹同时存在提供了证据。