Capizzi Mariagrazia, Ambrosini Ettore, Arbula Sandra, Mazzonetto Ilaria, Vallesi Antonino
Department of Neuroscience, Universitá degli Studi di Padova Padova, Italy.
Department of Neuroscience, Universitá degli Studi di PadovaPadova, Italy; Department of General Psychology, Universitá degli Studi di PadovaPadova, Italy.
Front Hum Neurosci. 2016 Mar 21;10:124. doi: 10.3389/fnhum.2016.00124. eCollection 2016.
The ability to flexibly switch between tasks is a hallmark of cognitive control. Despite previous studies that have investigated whether different task-switching types would be mediated by distinct or overlapping neural mechanisms, no definitive consensus has been reached on this question yet. Here, we aimed at directly addressing this issue by recording the event-related potentials (ERPs) elicited by two types of task-switching occurring in the context of spatial and verbal cognitive domains. Source analysis was also applied to the ERP data in order to track the spatial dynamics of brain activity underlying task-switching abilities. In separate blocks of trials, participants had to perform either spatial or verbal switching tasks both of which employed the same type of stimuli. The ERP analysis, which was carried out through a channel- and time-uninformed mass univariate approach, showed no significant differences between the spatial and verbal domains in the modulation of switch and repeat trials. Specifically, relative to repeat trials, switch trials in both domains were associated with a first larger positivity developing over left parieto-occipital electrodes and with a subsequent larger negativity distributed over mid-left fronto-central sites. The source analysis reconstruction for the two ERP components complemented these findings by highlighting the involvement of left-lateralized prefrontal areas in task-switching. Overall, our results join and extend recent research confirming the existence of left-lateralized domain-general task-switching processes.
在不同任务之间灵活切换的能力是认知控制的一个标志。尽管之前有研究调查了不同的任务切换类型是否由不同或重叠的神经机制介导,但在这个问题上尚未达成明确的共识。在这里,我们旨在通过记录在空间和语言认知领域背景下发生的两种任务切换类型所引发的事件相关电位(ERP),直接解决这个问题。还对ERP数据进行了源分析,以追踪任务切换能力背后大脑活动的空间动态。在不同的试验块中,参与者必须执行空间或语言切换任务,这两种任务都使用相同类型的刺激。通过一种通道和时间非特定的大规模单变量方法进行的ERP分析表明,在切换和重复试验的调节方面,空间和语言领域之间没有显著差异。具体而言,相对于重复试验,两个领域中的切换试验都与左顶枕电极上首先出现的较大正电位以及随后在左额中中央部位分布的较大负电位相关。对这两个ERP成分的源分析重建通过突出左侧前额叶区域在任务切换中的参与,补充了这些发现。总体而言,我们的结果加入并扩展了最近的研究,证实了左侧化的通用领域任务切换过程的存在。