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注意力负荷对从人类皮层记录的听觉事件相关电位的影响。

The effects of attentional load on auditory ERPs recorded from human cortex.

作者信息

Neelon Michael F, Williams Justin, Garell P Charles

机构信息

Department of Psychology, University of North Carolina, Asheville, NC, USA.

出版信息

Brain Res. 2006 Nov 6;1118(1):94-105. doi: 10.1016/j.brainres.2006.08.006. Epub 2006 Sep 7.

Abstract

Responses to acoustic input were recorded from human temporal cortex using subdural electrodes in order to investigate in greater anatomical detail how attentional load modulates exogenous auditory responses. Four patient-volunteers performed a dichotic listening task in which they listened for rare frequency deviants in a series of tones presented to both ears at interstimulus intervals (ISIs) of 400, 800, and 2000 ms. Across all ISIs, stimuli presented contralateral to electrode location produced the strongest deflections in the averaged ERP at approximately 90 and 170 ms post-stimulus on average (labeled N90stg and P170stg). Maximal recording sites for these peaks most often occurred over the Sylvian fissure or the upper bank of the posterior superior temporal gyrus. Neither ISI nor selective attention exhibited substantial effects on peak latencies. However, as presentation rates increased (decreasing ISI), overall averaged event-related potential (ERP) amplitudes declined significantly, while attending to the contralateral stimulus significantly increased both the N90stg and P170stg peaks for most patients. This effect of attention increased with decreasing ISI for both components most clearly in the difference between the grand-average ERPs for attending to vs. ignoring the contralateral stimulus, and even more dramatically in the percentage ratio of that difference over the mean peak amplitude. This amplifying effect of attention with increasing load, along with its anatomical location, suggests that attention can enhance exogenous sources in auditory cortex.

摘要

为了更详细地从解剖学角度研究注意力负荷如何调节外源性听觉反应,使用硬膜下电极记录了人类颞叶皮质对听觉输入的反应。四名患者志愿者进行了一项双耳分听任务,他们在刺激间隔(ISI)分别为400、800和2000毫秒时,聆听双耳呈现的一系列音调中罕见的频率偏差。在所有ISI中,与电极位置对侧呈现的刺激在刺激后平均约90和170毫秒时,在平均ERP中产生最强的偏转(标记为N90stg和P170stg)。这些峰值的最大记录部位最常出现在外侧裂或颞上回后上缘。ISI和选择性注意对峰值潜伏期均未表现出显著影响。然而,随着呈现速率增加(ISI减小),总体平均事件相关电位(ERP)幅度显著下降,而对于大多数患者而言,关注对侧刺激显著增加了N90stg和P170stg峰值。对于这两个成分,注意的这种效应随着ISI减小而增加,在关注与忽略对侧刺激的总体平均ERP之间的差异中最为明显,在该差异与平均峰值幅度的百分比比值中甚至更显著。注意力随着负荷增加的这种放大效应及其解剖位置表明,注意力可以增强听觉皮质中的外源性来源。

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