首页> 外文期刊>Cerebral cortex >The neural circuitry of pre-attentive auditory change-detection: an fMRI study of pitch and duration mismatch negativity generators.
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The neural circuitry of pre-attentive auditory change-detection: an fMRI study of pitch and duration mismatch negativity generators.

机译:注意前听觉变化检测的神经电路:音高和持续时间失配负性发生器的功能磁共振成像研究。

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摘要

Electrophysiological studies have revealed a pre-attentive change-detection system in the auditory modality. This system emits a signal termed the mismatch negativity (MMN) when any detectable change in a regular pattern of auditory stimulation occurs. The precise intracranial sources underlying MMN generation, and in particular whether these vary as a function of the acoustic feature that changes, is a matter of some debate. Using functional magnetic resonance imaging, we show that anatomically distinct networks of auditory cortices are activated as a function of the deviating acoustic feature--in this case, tone frequency and tone duration--strongly supporting the hypothesis that MMN generators in auditory cortex are feature dependent. We also detail regions of the frontal and parietal cortices activated by change-detection processes. These regions also show feature dependence and we hypothesize that they reflect recruitment of attention-switching mechanisms.
机译:电生理学研究已经揭示了听觉模式中注意前的变化检测系统。当听觉刺激的规则模式发生任何可检测到的变化时,该系统会发出称为失配负性(MMN)的信号。 MMN产生的确切颅内源,尤其是这些源是否随声学特征的变化而变化,这是一些争论的问题。使用功能性磁共振成像,我们发现听觉皮层的解剖学上不同的网络是根据偏离的声学特征(在这种情况下是音调频率和声调持续时间)激活的,这强烈支持了听觉皮层中MMN发生器是特征的假设依赖。我们还详细介绍了由变化检测过程激活的额叶和顶叶皮层区域。这些区域也显示出特征依赖性,我们假设它们反映了注意力转换机制的募集。

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