Giard M H, Perrin F, Pernier J, Bouchet P
Brain Signals and Processes Laboratory, INSERM-U280, Lyon, France.
Psychophysiology. 1990 Nov;27(6):627-40. doi: 10.1111/j.1469-8986.1990.tb03184.x.
The neurophysiological mechanisms underlying mismatch negativity (MMN) can be inferred from an examination of some of the brain generators involved in the process of this event-related potential (ERP) component. ERPs were recorded in two studies in which the subjects were involved in a selective dichotic listening task. Subjects were required to silently count rare stimuli deviating in pitch from a sequence of standard stimuli in one ear, while ignoring all the stimuli (standards and deviants) delivered randomly to the other ear. The results showed that, in all cases, the negative wave elicited by the deviant stimuli showed the highest amplitudes over the right hemiscalp irrespective of the ear of stimulation or the direction of attention. Scalp radial current density analysis showed that this asymmetric potential distribution could be attributed to the sum of activities of two sets of neural generators: one temporal, located in the vicinity of the primary auditory cortex, predominantly activated in the hemisphere contralateral to the ear of stimulation, and the other frontal, involving mainly the right hemisphere. The results are discussed in light of Näätänen's model: we suggest the dissociation of two functional processes on the basis of activity of distinct brain areas: a sensory memory mechanism related to the temporal generators, and an automatic attention-switching process related to the frontal generators.
失匹配负波(MMN)背后的神经生理机制可以通过对参与这一事件相关电位(ERP)成分过程的一些脑电发生器进行检查来推断。在两项研究中记录了ERP,其中受试者参与了选择性双耳分听任务。要求受试者在一只耳朵中默默地数出与一系列标准刺激在音高上不同的罕见刺激,同时忽略随机传递到另一只耳朵的所有刺激(标准刺激和偏差刺激)。结果表明,在所有情况下,偏差刺激引发的负波在右半头皮上显示出最高的振幅,而与刺激耳朵或注意力方向无关。头皮径向电流密度分析表明,这种不对称的电位分布可归因于两组神经发生器活动的总和:一组位于颞叶,靠近初级听觉皮层,主要在与刺激耳朵对侧的半球中被激活,另一组位于额叶,主要涉及右半球。根据纳塔南的模型对结果进行了讨论:我们建议根据不同脑区的活动将两个功能过程分离:一个与颞叶发生器相关的感觉记忆机制,以及一个与额叶发生器相关的自动注意力切换过程。