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左颞叶 alpha 频段活动在音高工作记忆保持期间增加。

Left temporal alpha band activity increases during working memory retention of pitches.

机构信息

Donders Institute for Brain, Cognition and Behaviour, Centre for Cognitive Neuroimaging, Radboud University Nijmegen, Nijmegen, The Netherlands.

出版信息

Eur J Neurosci. 2010 May;31(9):1701-7. doi: 10.1111/j.1460-9568.2010.07227.x.

DOI:10.1111/j.1460-9568.2010.07227.x
PMID:20525083
Abstract

The functional role and regional specificity of approximately 10 Hz alpha band activity remains of debate. Alpha band activity is strongly modulated in visual working memory tasks and it has been proposed to subserve resource allocation by disengaging task-irrelevant regions. It remains unknown if alpha band activity plays a similar role during auditory working memory processing. In this study we applied whole-head magnetoencephalography to investigate brain activity in a delayed-match-to-sample task including pure tones, non-harmonic complex tones and harmonic tones. The paradigm included a control condition in which no active auditory maintenance was required. We observed a bilateral increase in 5-12 Hz power during the perception of harmonic and non-harmonic complex tones compared with the control tone. During the maintenance period a left-lateralized increase in 5-12 Hz was found for all stimuli compared with the control condition. Using a beam-forming approach we identified the sources in left temporal regions. Given that functional magnetic resonance imaging, positron emission tomography and lesion studies have identified right hemisphere regions to be engaged in memory of pitch, we propose that the 5-12 Hz activity serves to functionally disengage left temporal regions. Our findings support the notion that alpha activity is a general mechanism for disengaging task-irrelevant regions.

摘要

大约 10 Hz 的 alpha 波段活动的功能作用和区域特异性仍然存在争议。在视觉工作记忆任务中,alpha 波段活动受到强烈调节,有人提出它通过与任务无关的区域脱离来分配资源。在听觉工作记忆处理过程中,alpha 波段活动是否发挥类似作用尚不清楚。在这项研究中,我们应用全头脑磁图研究了包括纯音、非谐波复合音和谐波音在内的延迟匹配样本任务中的大脑活动。该范式包括一个不需要主动听觉维持的对照条件。与对照音相比,我们观察到在感知谐波和非谐波复合音时,5-12 Hz 功率在双侧增加。与对照条件相比,在维持期,所有刺激都表现出左半球的 5-12 Hz 功率增加。使用波束形成方法,我们确定了左颞叶区域的来源。鉴于功能磁共振成像、正电子发射断层扫描和病变研究已经确定了右半球区域参与音高记忆,我们提出 5-12 Hz 活动有助于功能性地脱离左颞叶区域。我们的发现支持了 alpha 活动是一种用于脱离任务无关区域的通用机制的观点。

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