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人类的注意力新奇性检测受前注意感觉记忆的支配。

Attentive novelty detection in humans is governed by pre-attentive sensory memory.

作者信息

Tiitinen H, May P, Reinikainen K, Näätänen R

机构信息

Department of Psychology, University of Helsinki, Finland.

出版信息

Nature. 1994 Nov 3;372(6501):90-2. doi: 10.1038/372090a0.

Abstract

Being able to detect unusual, possibly dangerous events in the environment is a fundamental ability that helps ensure the survival of biological organisms. Novelty detection requires a memory system that models (builds neural representations of) events in the environment, so that changes are detected because they violate the predictions of the model. The earliest physiologically measurable brain response to novel auditory stimuli is the mismatch negativity, MMN, a component of the event-related potential. It is elicited when a predictable series of unvarying stimuli is unexpectedly followed by a deviating stimulus. As the occurrence of MMN is not usually affected by the direction of attention, MMN reflects the operation of automatic sensory (echoic) memory, the earliest memory system that builds traces of the acoustic environment against which new stimuli can be compared. The dependence of attentive novelty detection on earlier, pre-attentive processes, however, has remained elusive. Previous, related studies seem to suggest a relationship between MMN and attentive processes, although no conclusive evidence has so far been shown. Here we address novelty detection in humans both on a physiological and behavioural level, and show how attentive novelty detection is governed by a pre-attentive sensory memory mechanism.

摘要

能够检测环境中异常的、可能危险的事件是一种基本能力,有助于确保生物有机体的生存。新奇性检测需要一个记忆系统,该系统对环境中的事件进行建模(构建神经表征),以便检测到变化,因为这些变化违反了模型的预测。对新颖听觉刺激最早可通过生理测量的大脑反应是失配负波(MMN),它是事件相关电位的一个成分。当一系列可预测的不变刺激之后意外地出现一个偏离刺激时,就会引发MMN。由于MMN的出现通常不受注意力方向的影响,MMN反映了自动感觉(回声)记忆的运作,这是最早的记忆系统,它构建声学环境的痕迹,以便与新刺激进行比较。然而,注意力新奇性检测对早期的、前注意过程的依赖性仍然难以捉摸。以前的相关研究似乎表明MMN与注意力过程之间存在某种关系,尽管迄今为止尚未有确凿的证据。在这里,我们从生理和行为层面研究人类的新奇性检测,并展示注意力新奇性检测是如何由前注意感觉记忆机制控制的。

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