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时间可预测性对纹状皮层前馈处理的外源性注意调制的影响。

Effect of temporal predictability on exogenous attentional modulation of feedforward processing in the striate cortex.

作者信息

Dassanayake Tharaka L, Michie Patricia T, Fulham Ross

机构信息

School of Psychology, The University of Newcastle, Callaghan, NSW 2308, Australia; Department of Physiology, Faculty of Medicine, University of Peradeniya, Peradeniya 20400, Sri Lanka.

School of Psychology, The University of Newcastle, Callaghan, NSW 2308, Australia; Priority Research Centre for Brain and Mental Health Research, The University of Newcastle, Callaghan, NSW 2308, Australia.

出版信息

Int J Psychophysiol. 2016 Jul;105:9-16. doi: 10.1016/j.ijpsycho.2016.04.007. Epub 2016 Apr 22.

Abstract

Non-informative peripheral visual cues facilitate extrastriate processing of targets [as indexed by enhanced amplitude of contralateral P1 event-related potential (ERP) component] presented at the cued location as opposed to those presented at uncued locations, at short cue-target stimulus onset asynchrony (SOA). Recently, two lines of research are emerging to suggest that the locus of attentional modulation is flexible and depends on 1) perceptual load and 2) temporal predictability of visual stimuli. We aimed to examine the effect of temporal predictability on attentional modulation of feed-forward activation of the striate cortex (as indexed by the C1 ERP component) by high-perceptual-load (HPL) stimuli. We conducted two ERP experiments where exogenously-cued HPL targets were presented under two temporal predictability conditions. In Experiment 1 [high-temporal-predictability (HTP) condition], 17 healthy subjects (age 18-26years) performed a line-orientation discrimination task on HPL targets presented in the periphery of the left upper or diagonally opposite right lower visual field, validly or invalidly cued by peripheral cues. SOA was fixed at 160ms. In Experiment 2 [low-temporal-predictability (LTP) condition], (n=10, age 19-36years) we retained HPL stimuli but randomly intermixed short-SOA trials with long-SOA (1000ms) trials in the task-blocks. In Experiment 1 and the short-SOA condition of the Experiment 2, validly-cued targets elicited significantly faster reaction times and larger contralateral P1, consistent with previous literature. A significant attentional enhancement of C1 amplitude was also observed in the HTP, but not LTP condition. The findings suggest that exogenous visual attention can facilitate the earliest stage of cortical processing under HTP conditions.

摘要

非信息性外周视觉线索促进了对线索提示位置呈现的目标(通过对侧P1事件相关电位(ERP)成分增强的幅度来衡量)的纹外加工,与未提示位置呈现的目标相比,在短线索 - 目标刺激起始异步(SOA)情况下。最近,有两条研究线索表明,注意力调制的位点是灵活的,并且取决于1)感知负荷和2)视觉刺激的时间可预测性。我们旨在研究时间可预测性对高感知负荷(HPL)刺激引起的纹状皮质前馈激活(通过C1 ERP成分衡量)的注意力调制的影响。我们进行了两个ERP实验,其中外源性提示的HPL目标在两种时间可预测性条件下呈现。在实验1 [高时间可预测性(HTP)条件]中,17名健康受试者(年龄18 - 26岁)对呈现于左上视野外周或对角相对的右下视野外周的HPL目标执行线条方向辨别任务,由外周线索有效或无效提示。SOA固定为160毫秒。在实验2 [低时间可预测性(LTP)条件]中(n = 10,年龄19 - 36岁),我们保留HPL刺激,但在任务块中将短SOA试验与长SOA(1000毫秒)试验随机混合。在实验1和实验2的短SOA条件下,有效提示的目标引发了明显更快的反应时间和更大的对侧P1,与先前文献一致。在HTP条件下也观察到C1幅度的显著注意力增强,但在LTP条件下未观察到。这些发现表明,外源性视觉注意力在HTP条件下可以促进皮质加工的最早阶段。

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