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选择性注意提高了人类听觉皮层的增益和特征选择性。

Selective attention increases both gain and feature selectivity of the human auditory cortex.

机构信息

Laboratory of Computational Engineering, Helsinki University of Technology, Espoo, Finland.

出版信息

PLoS One. 2007 Sep 19;2(9):e909. doi: 10.1371/journal.pone.0000909.

Abstract

BACKGROUND

An experienced car mechanic can often deduce what's wrong with a car by carefully listening to the sound of the ailing engine, despite the presence of multiple sources of noise. Indeed, the ability to select task-relevant sounds for awareness, whilst ignoring irrelevant ones, constitutes one of the most fundamental of human faculties, but the underlying neural mechanisms have remained elusive. While most of the literature explains the neural basis of selective attention by means of an increase in neural gain, a number of papers propose enhancement in neural selectivity as an alternative or a complementary mechanism.

METHODOLOGY/PRINCIPAL FINDINGS: Here, to address the question whether pure gain increase alone can explain auditory selective attention in humans, we quantified the auditory cortex frequency selectivity in 20 healthy subjects by masking 1000-Hz tones by continuous noise masker with parametrically varying frequency notches around the tone frequency (i.e., a notched-noise masker). The task of the subjects was, in different conditions, to selectively attend to either occasionally occurring slight increments in tone frequency (1020 Hz), tones of slightly longer duration, or ignore the sounds. In line with previous studies, in the ignore condition, the global field power (GFP) of event-related brain responses at 100 ms from the stimulus onset to the 1000-Hz tones was suppressed as a function of the narrowing of the notch width. During the selective attention conditions, the suppressant effect of the noise notch width on GFP was decreased, but as a function significantly different from a multiplicative one expected on the basis of simple gain model of selective attention.

CONCLUSIONS/SIGNIFICANCE: Our results suggest that auditory selective attention in humans cannot be explained by a gain model, where only the neural activity level is increased, but rather that selective attention additionally enhances auditory cortex frequency selectivity.

摘要

背景

尽管存在多种噪声源,一位经验丰富的汽车修理工通常可以通过仔细聆听发动机的声音来推断汽车出了什么问题。事实上,能够选择意识相关的任务声音,同时忽略不相关的声音,是人类最基本的能力之一,但潜在的神经机制仍然难以捉摸。虽然大多数文献通过增加神经增益来解释选择性注意的神经基础,但也有一些论文提出增强神经选择性作为替代或补充机制。

方法/主要发现:在这里,为了解决仅通过增加纯增益是否可以解释人类听觉选择性注意的问题,我们通过用具有参数变化的频率缺口的连续噪声掩蔽器(即缺口噪声掩蔽器)来掩蔽 1000 Hz 音调,量化了 20 名健康受试者的听觉皮层频率选择性。受试者的任务是在不同条件下选择性地注意偶尔发生的音调频率(1020 Hz)轻微增加、持续时间稍长的音调,或忽略声音。与之前的研究一致,在忽略条件下,1000 Hz 音调刺激开始后 100 ms 的事件相关脑反应的全局场功率(GFP)随着缺口宽度的变窄而受到抑制。在选择性注意条件下,噪声缺口宽度对 GFP 的抑制作用降低,但与基于选择性注意的简单增益模型预期的乘法函数显著不同。

结论/意义:我们的结果表明,人类听觉选择性注意不能仅用增益模型来解释,在增益模型中,只有神经活动水平增加,而选择性注意还增强了听觉皮层的频率选择性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a1b/1975472/60b83a89454f/pone.0000909.g001.jpg

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