Fuentemilla Ll, Marco-Pallarés J, Münte T F, Grau C
Neurodynamics Laboratory, Department of Psychiatry and Clinical Psychobiology, University of Barcelona, Catalonia, Spain.
Brain Res. 2008 Jul 18;1220:93-101. doi: 10.1016/j.brainres.2007.07.079. Epub 2007 Aug 17.
The mismatch negativity is an electrophysiological marker of auditory change detection in the event-related brain potential and has been proposed to reflect an automatic comparison process between an incoming stimulus and the representation of prior items in a sequence. There is evidence for two main functional subcomponents comprising the MMN, generated by temporal and frontal brain areas, respectively. Using data obtained in an MMN paradigm, we performed time-frequency analysis to reveal the changes in oscillatory neural activity in the theta band. The results suggest that the frontal component of the MMN is brought about by an increase in theta power for the deviant trials and, possibly, by an additional contribution of theta phase alignment. By contrast, the temporal component of the MMN, best seen in recordings from mastoid electrodes, is generated by phase resetting of theta rhythm with no concomitant power modulation. Thus, frontal and temporal MMN components do not only differ with regard to their functional significance but also appear to be generated by distinct neurophysiological mechanisms.
失匹配负波是事件相关脑电位中听觉变化检测的一种电生理标记,有人提出它反映了传入刺激与序列中先前项目表征之间的自动比较过程。有证据表明,失匹配负波主要由两个功能子成分组成,分别由颞叶和额叶脑区产生。利用在失匹配负波范式中获得的数据,我们进行了时频分析,以揭示θ波段振荡神经活动的变化。结果表明,失匹配负波的额叶成分是由偏差试验中θ功率的增加引起的,并且可能还由θ相位对齐的额外作用引起。相比之下,失匹配负波的颞叶成分在乳突电极记录中最为明显,它是由θ节律的相位重置产生的,而没有伴随的功率调制。因此,额叶和颞叶失匹配负波成分不仅在功能意义上有所不同,而且似乎是由不同的神经生理机制产生的。