Vibell J, Klinge C, Zampini M, Nobre A C, Spence C
Department of Experimental Psychology, University of Oxford, Oxford, UK.
Department of Psychology, University of Hawaii, 2530 Dole St, Honolulu, HI, 96822, USA.
Exp Brain Res. 2017 Oct;235(10):2983-2996. doi: 10.1007/s00221-017-5030-4. Epub 2017 Jul 17.
Vibell et al. (J Cogn Neurosci 19:109-120, 2007) reported that endogenously attending to a sensory modality (vision or touch) modulated perceptual processing, in part, by the relative speeding-up of neural activation (i.e., as a result of prior entry). However, it was unclear whether it was the fine temporal discrimination required by the temporal-order judgment task that was used, or rather, the type of attentional modulation (spatial locations or sensory modalities) that was responsible for the shift in latencies that they observed. The present study used a similar experimental design to evaluate whether spatial attention would also yield similar latency effects suggestive of prior entry in the early visual P1 potentials. Intriguingly, while the results demonstrate similar neural latency shifts attributable to spatial attention, they started at a somewhat later stage than seen in Vibell et al.'s study. These differences are consistent with different neural mechanisms underlying attention to a specific sensory modality versus to a spatial location.
维贝尔等人(《认知神经科学杂志》第19卷,第109 - 120页,2007年)报告称,内源性地关注一种感觉模态(视觉或触觉)会部分地通过神经激活的相对加速(即由于提前进入)来调节感知处理。然而,尚不清楚是所使用的时间顺序判断任务所需的精细时间辨别,还是注意力调制的类型(空间位置或感觉模态)导致了他们所观察到的潜伏期变化。本研究采用了类似的实验设计,以评估空间注意力是否也会在早期视觉P1电位中产生类似的潜伏期效应,提示存在提前进入。有趣的是,虽然结果显示了归因于空间注意力的类似神经潜伏期变化,但这些变化开始的阶段比维贝尔等人的研究中所见的稍晚。这些差异与关注特定感觉模态与关注空间位置所涉及的不同神经机制是一致的。