School of Experimental Psychology, Faculty of Science, University of Bristol Bristol, UK.
Front Hum Neurosci. 2013 Aug 1;7:426. doi: 10.3389/fnhum.2013.00426. eCollection 2013.
The visual mismatch negativity (vMMN) response is typically examined by subtracting the average response to a deviant stimulus from the response to the standard. This approach, however, can omit a critical element of the neural response, i.e., the non-phase-locked ("induced") oscillatory activity. Recent investigations of the oscillatory characteristics of the auditory mismatch negativity (aMMN) identified a crucial role for theta phase locking and power. Oscillatory characteristics of the vMMN from 39 healthy young adults were investigated in order to establish whether theta phase locking plays a similar role in the vMMN response. We explored changes in phase locking, overall post-stimulus spectral power as well as non-phase-locked spectral power compared to baseline (-300 to 0 ms). These were calculated in the frequency range of 4-50 Hz and analysed using a non-parametric cluster based analysis. vMMN was found intermittently in a broad time interval 133-584 ms post-stimulus and was associated with an early increase in theta phase locking (75-175 ms post-stimulus) that was not accompanied by an increase in theta power. Theta phase locking in the absence of an increase in theta power has been associated with the distribution and flow of information between spatially disparate neural locations. Additionally, in the 450-600 ms post-stimulus interval, deviant stimuli yielded a stronger decrease in non-phase-locked alpha power than standard stimuli, potentially reflecting a shift in attentional resources following the detection of change. The examination of oscillatory activity is crucial to the comprehensive analysis of a neural response to a stimulus, and when combined with evoked potentials (EPs) provide a more complete picture of neurocognitive processing.
视觉失匹配负波(vMMN)反应通常通过从标准刺激反应中减去偏差刺激的平均反应来检查。然而,这种方法可能会忽略神经反应的一个关键元素,即非锁相(“诱导”)的振荡活动。最近对听觉失匹配负波(aMMN)的振荡特征的研究确定了theta 相位锁定和功率的关键作用。为了确定 theta 相位锁定在 vMMN 反应中是否发挥类似作用,研究了 39 名健康年轻成年人的 vMMN 振荡特征。我们探索了与基线(-300 至 0 毫秒)相比,相位锁定、整体刺激后频谱功率以及非锁相频谱功率的变化。这些在 4-50 Hz 的频率范围内进行计算,并使用基于非参数聚类的分析进行分析。vMMN 在刺激后 133-584 毫秒的宽时间间隔内间歇性出现,与 theta 相位锁定的早期增加(刺激后 75-175 毫秒)相关联,而 theta 功率没有增加。在没有增加 theta 功率的情况下,theta 相位锁定与空间上离散的神经位置之间的信息分布和流动有关。此外,在刺激后 450-600 毫秒的间隔内,与标准刺激相比,偏差刺激产生了更强的非锁相 alpha 功率下降,这可能反映了在检测到变化后注意力资源的转移。对振荡活动的检查对于刺激的神经反应的综合分析至关重要,并且与诱发电位(EP)结合使用,可以提供更完整的神经认知处理图像。