Chen Siyi, Geyer Thomas, Zinchenko Artyom, Müller Hermann J, Shi Zhuanghua
Ludwig-Maximilians-Universität München, Germany.
J Cogn Neurosci. 2022 Aug 1;34(9):1702-1717. doi: 10.1162/jocn_a_01880.
Using a combination of behavioral and EEG measures in a tactile odd-one-out search task with collocated visual items, we investigated the mechanisms underlying facilitation of search by repeated (vs. nonrepeated) spatial distractor-target configurations ("contextual cueing") when either the tactile (same-modality) or the visual array (different-modality) context was predictive of the location of the tactile singleton target. Importantly, in both conditions, the stimulation was multisensory, consisting of tactile plus visual items, although the target was singled out in the tactile modality and so the visual items were task-irrelevant. We found that when the predictive context was tactile, facilitation of search RTs by repeated configurations was accompanied by, and correlated with, enhanced lateralized ERP markers of pre-attentive (N1, N2) and, respectively focal-attentional processing (contralateral delay activity) not only over central ("somatosensory"), but also posterior ("visual") electrode sites, although the ERP effects were less marked over visual cortex. A similar pattern-of facilitated RTs and enhanced lateralized (N2 and contralateral delay activity) ERP components-was found when the predictive context was visual, although the ERP effects were less marked over somatosensory cortex. These findings indicate that both somatosensory and visual cortical regions contribute to the more efficient processing of the tactile target in repeated stimulus arrays, although their involvement is differentially weighted depending on the sensory modality that contains the predictive information.
在一项伴有视觉项目的触觉“odd-one-out”搜索任务中,我们结合行为学和脑电图测量方法,研究了在触觉(同模态)或视觉阵列(不同模态)背景能够预测触觉单独目标位置时,重复(相对于非重复)空间干扰物-目标配置(“情境线索化”)促进搜索的潜在机制。重要的是,在这两种情况下,刺激都是多感官的,由触觉和视觉项目组成,尽管目标是在触觉模态中被挑选出来的,因此视觉项目与任务无关。我们发现,当预测背景是触觉时,重复配置对搜索反应时间的促进伴随着并与前注意(N1、N2)和分别为焦点注意处理(对侧延迟活动)的增强的偏侧化ERP标记相关,不仅在中央(“体感”)电极部位,而且在后部(“视觉”)电极部位,尽管ERP效应在视觉皮层上不太明显。当预测背景是视觉时,也发现了类似的反应时间促进和增强的偏侧化(N2和对侧延迟活动)ERP成分的模式,尽管ERP效应在体感皮层上不太明显。这些发现表明,体感和视觉皮层区域都有助于在重复刺激阵列中更有效地处理触觉目标,尽管它们的参与程度根据包含预测信息的感觉模态而有所不同。