Institute of Medical Psychology, Goethe University, Frankfurt am Main, Heinrich Hoffmann Strasse 10, 60528 Frankfurt, Germany.
Neuroimage. 2013 Nov 15;82:101-6. doi: 10.1016/j.neuroimage.2013.05.111. Epub 2013 May 31.
Temporal predictability of auditory events induces larger P300 amplitudes and shorter P300 latencies compared to stimulus presentation with variable onset asynchronies. This suggests that periodic stimuli lead to neuronal entrainment resulting in a more efficient allocation of attentional resources. Simultaneous synchronized motor activity should facilitate the precise temporal encoding of acoustic sequences. Therefore the current event-related potential study investigated whether embodied stimulus encoding enhances the reported effects of stimulus periodicity. We found that simultaneous pedaling on an ergometer compared to a physically passive situation amplified the predictability effect on the P300 component. Furthermore, the temporal variability of cycling behavior correlated positively with both P300 latency and P300 amplitude. These findings indicate that auditory-motor synchronization enhances the attentional processing of periodical auditory stimuli.
与具有可变起始时间间隔的刺激呈现相比,听觉事件的时间可预测性会导致更大的 P300 幅度和更短的 P300 潜伏期。这表明周期性刺激会导致神经元的同步,从而更有效地分配注意力资源。同时进行的同步运动活动应该有助于精确地对声音序列进行时间编码。因此,当前的事件相关电位研究调查了体现刺激编码是否增强了刺激周期性的报告效应。我们发现,与物理被动状态相比,在测功仪上同时踩踏会放大 P300 成分上的可预测性效应。此外,循环行为的时间可变性与 P300 潜伏期和 P300 幅度呈正相关。这些发现表明,听觉-运动同步增强了对周期性听觉刺激的注意力处理。