Lange Kathrin, Krämer Ulrike M, Röder Brigitte
Department of Experimental Psychology, Heinrich Heine University, 40225, Düsseldorf, Germany.
Exp Brain Res. 2006 Aug;173(1):130-40. doi: 10.1007/s00221-006-0372-3. Epub 2006 Feb 28.
Both spatial and temporal attention improves auditory processing and these effects seem to originate at perceptual processing stages. It is not yet known if space and time are used in parallel or sequentially for stimulus selection. To directly compare when temporal and spatial attention affect stimulus processing in the auditory modality, short and long empty intervals (600 and 1,200 ms) were presented. Each interval started with a centrally presented tone (S1) and ended with a second tone (S2) presented either on the left or on the right side. Participants had to attend one point in time (offset of the short or long interval) and one position (left or right side) and had to respond to infrequent, deviant offset markers presented at the attended time point and at the attended position. The N1 of concurrently recorded event-related potentials (ERPs) to the frequent standard stimuli was enhanced by both temporal and spatial attention. The temporal and the spatial N1 attention effect had a similar scalp topography, suggesting common neural generators. By contrast, later effects of temporal and spatial attention, consisting of a posterior positivity and an anterior negativity, markedly differed.
空间注意力和时间注意力都能改善听觉处理,而且这些效应似乎起源于感知处理阶段。目前尚不清楚空间和时间是并行还是顺序用于刺激选择。为了直接比较时间注意力和空间注意力何时影响听觉模态中的刺激处理,呈现了短和长的空间隔(600毫秒和1200毫秒)。每个间隔以中央呈现的音调(S1)开始,并以在左侧或右侧呈现的第二个音调(S2)结束。参与者必须关注一个时间点(短或长间隔的偏移)和一个位置(左侧或右侧),并对在关注的时间点和关注的位置呈现的不频繁、异常的偏移标记做出反应。对频繁出现的标准刺激同时记录的事件相关电位(ERP)的N1成分,在时间和空间注意力条件下均增强。时间和空间N1注意力效应具有相似的头皮地形图,表明存在共同的神经发生器。相比之下,时间和空间注意力的后期效应,包括后部正电位和前部负电位,明显不同。