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刺激间隔与听觉事件相关电位的选择性注意效应:“N1增强”与加工负波。

Interstimulus interval and the selective-attention effect on auditory ERPs: "N1 enhancement" versus processing negativity.

作者信息

Teder W, Alho K, Reinikainen K, Näätänen R

机构信息

Department of Psychology, University of Helsinki, Finland.

出版信息

Psychophysiology. 1993 Jan;30(1):71-81. doi: 10.1111/j.1469-8986.1993.tb03206.x.

Abstract

The attention effect on the auditory event-related potential (ERP) in dichotic conditions was studied as a function of the interstimulus interval (ISI). Subjects attended to stimuli delivered to a designated ear and responded to infrequent pitch deviants in this input. The mean ISI was either 80, 160, 480, or 800 ms. Negative difference waves (Nds) were computed by subtracting ERPs to unattended standards from ERPs to the same stimuli when attended. The exogenous N1, as estimated from unattended standard ERPs, was larger contralaterally to the stimulus and inverted in polarity at mastoids. With decreasing ISIs, N1 diminished in amplitude much faster than did the Nd. In addition, N1 latency remained stable, whereas Nd peaked markedly earlier with shorter ISIs, almost perfectly coinciding with the exogenous N1. However, this temporal coincidence found in grand averages proved to be illusory in single subjects. The early Nd showed no contralateral asymmetry at its peak, but asymmetry was apparent during the ascending slope. These lateral asymmetries resembled those of the exogenous N1 but occurred later. The early Nd peak was, at least mainly, caused by an endogenous attention effect, the processing negativity (PN), even with very short ISIs, but an effect on the exogenous N1 could not be excluded.

摘要

在双耳分听条件下,研究了作为刺激间隔(ISI)函数的注意力对听觉事件相关电位(ERP)的影响。受试者关注传递到指定耳朵的刺激,并对该输入中不常见的音高偏差做出反应。平均ISI为80、160、480或800毫秒。负向差异波(Nds)通过将注意力集中时对相同刺激的ERP减去对未被注意的标准刺激的ERP来计算。从未被注意的标准ERP估计的外源性N1,在刺激对侧更大,并且在乳突处极性反转。随着ISI的减小,N1的振幅比Nd减小得快得多。此外,N1潜伏期保持稳定,而Nd在较短ISI时峰值明显提前,几乎与外源性N1完全重合。然而,在总体平均值中发现的这种时间上的重合在单个受试者中被证明是虚幻的。早期Nd在峰值时没有对侧不对称,但在上升斜率期间不对称明显。这些侧向不对称与外源性N1的相似,但出现得更晚。早期Nd峰值至少主要是由内源性注意力效应即加工负波(PN)引起的,即使ISI非常短,但对外源性N1的影响也不能排除。

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