Sculthorpe Lauren D, Collin Charles A, Campbell Kenneth B
School of Psychology, University of Ottawa, Ontario, Canada K1N 6N5.
Brain Res. 2008 Oct 9;1234:78-86. doi: 10.1016/j.brainres.2008.07.031. Epub 2008 Jul 17.
The mismatch negativity, an ERP that reflects the detection of change in the auditory environment, is considered to be a relatively automatic process. Its automaticity has by in large been studied using the oddball paradigm, in which a physical feature of a frequently presented standard stimulus is changed. In the present study, the automaticity of the MMN is tested using a MMN elicited by a violation of a more abstract auditory pattern. Fourteen subjects were presented with an alternating pattern of two tones (ABABAB) that was occasionally broken by deviant repetitions (e.g., ABABABBBAB). The alternating tones were separated by 1 or 6 semitones in different conditions. The subjects were engaged in a continuous multiple object tracking (MOT) task and thus ignored the auditory stimuli. Difficulty of the MOT task was manipulated by increasing the number of objects to be tracked. Subjects were also asked to read a text and ignore the auditory stimuli in another condition. A much larger MMN was elicited by pattern violations in the 6 than in the 1 semitone condition. The difficult visual task should have presumably required greater attentional focus than the easy task, and performance did deteriorate during the difficult MOT. The MMN, however, was not affected by the demands of the MOT task. This finding suggests that the MMN elicited by the violation of a pattern is not affected by the presumed attentional demands of a difficult continuous task such as multiple object tracking.
失匹配负波(MMN)是一种反映听觉环境变化检测的事件相关电位,被认为是一个相对自动的过程。其自动性在很大程度上是通过奇偶数范式进行研究的,在该范式中,频繁呈现的标准刺激的物理特征会发生变化。在本研究中,通过违反更抽象的听觉模式引发的MMN来测试MMN的自动性。向14名受试者呈现两个音调的交替模式(ABABAB),该模式偶尔会被异常重复(例如,ABABABBBAB)打断。在不同条件下,交替音调相隔1或6个半音。受试者参与连续多目标跟踪(MOT)任务,因此忽略听觉刺激。通过增加要跟踪的目标数量来操纵MOT任务的难度。在另一种条件下,还要求受试者阅读文本并忽略听觉刺激。与1个半音条件相比,6个半音条件下模式违反引发的MMN要大得多。困难的视觉任务可能比简单任务需要更大的注意力集中,并且在困难的MOT任务中表现确实会下降。然而,MMN不受MOT任务要求的影响。这一发现表明,由模式违反引发的MMN不受诸如多目标跟踪等困难连续任务的假定注意力需求的影响。