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Auditory selective attention in humans: Analysis of mechanisms using event-related brain potentials.

机译:对人类的听觉选择性注意:使用事件相关脑电势的机制分析。

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摘要

This research investigated the neurophysiological and psychological mechanisms of auditory selective attention in humans using the technique of event-related potentials (ERPs) to gauge neural activity at different levels of the auditory pathways. Two dichotic listening experiments were performed in which conditions were optimized for highly focussed attention and the early selection of stimuli. These conditions included: (1) easily discriminable "channels" of stimuli, with attended and unattended tones distinguished by both pitch and ear of entry, (2) rapid stimulation rate, and (3) a difficult discrimination task (of infrequent deviant tones) within the attended channel.;The earliest ERP components (latency 1-10 msec), the brainstem evoked responses, were not affected by attention. However, an enhanced positivity between 20-50 msec was observed in the ERPs to attended-channel tones. The early onset of this effect strongly supports the early selection hypothesis that sensory processing can be selectively biased before full stimulus analysis has occurred. In addition, the effect of attention in the 80-230 msec range appeared to include an enhancement of the "exogenous" N1 and P2 components. This lent additional support to the view that early gating of irrelevant sensory input is one of the mechanisms involved in selective auditory attention. The "mismatch negativity" (MMN) wave elicited by the infrequent deviant tones in the unattended ear was markedly reduced, providing additional evidence for such early suppression and calling into question previous assertions that acoustic feature analysis and mismatch detection cannot be influenced by attention.;When stimuli are presented at rapid rates as in these attention experiments, the ERPs to adjacent stimuli in the sequence can overlap and confound one another. This problem was analyzed in detail using signal processing principles, and a new technique (Adjar) was developed to correct for it. Application of the Adjar technique demonstrated that the early attention effects were not the result of differential overlap from previous ERPs and enabled an analysis of the effects of the preceding stimulus type and ISI on the attention-sensitive ERPs. This latter application further supported the view that highly focussed selective attention can modulate sensory-evoked activity in the auditory pathways.
机译:这项研究调查了人类听觉选择性注意的神经生理和心理机制,使用事件相关电位(ERP)技术来评估听觉途径不同水平的神经活动。进行了两个分立听觉实验,其中优化了条件,以高度集中注意力和早期选择刺激。这些条件包括:(1)易于区分的刺激“通道”,通过音高和进入耳来区分有人看管和无人看管的音调;(2)快速的刺激速度;以及(3)困难的辨别任务(不常见的异常音调)在最早的ERP组件(等待时间1-10毫秒)中,脑干诱发的反应不受注意力的影响。但是,在ERP中观察到出席通道音调的阳性率提高了20-50毫秒。这种效应的早期发作强烈支持早期选择的假设,即在进行完整的刺激分析之前,可以有选择地偏向感觉处理。此外,在80-230毫秒范围内的注意力影响似乎包括增强“外源” N1和P2成分。这为不相关的感觉输入的早期门控是选择性听觉注意所涉及的机制之一的观点提供了额外的支持。无人值守的异常音调在无人值守的耳朵中引起的“失配负性”(MMN)波被显着降低,这为这种早期抑制提供了更多证据,并引起了先前关于声特征分析和失配检测不受注意力影响的说法的质疑。当像这些注意力实验中那样以快速的速率呈现刺激时,序列中相邻刺激的ERP可能会重叠并彼此混淆。使用信号处理原理对该问题进行了详细分析,并开发了一种新技术(Adjar)进行纠正。 Adjar技术的应用表明,早期注意效果不是以前的ERPs重叠重叠的结果,因此可以分析先前刺激类型和ISI对注意敏感的ERPs的影响。后面的申请进一步支持了这样一种观点,即高度集中的选择性注意力可以调节听觉途径中的感觉诱发活动。

著录项

  • 作者

    Woldorff, Marty G.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Biology Neuroscience.;Psychology Physiological.
  • 学位 Ph.D.
  • 年度 1989
  • 页码 319 p.
  • 总页数 319
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经科学;生理心理学;
  • 关键词

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