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首页> 外文期刊>Journal of Cognitive Neuroscience >Modulation of Alpha Activity in the Parieto-occipital Area by Distractors during a Visuospatial Working Memory Task: A Magnetoencephalographic Study
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Modulation of Alpha Activity in the Parieto-occipital Area by Distractors during a Visuospatial Working Memory Task: A Magnetoencephalographic Study

机译:视空间工作记忆任务期间牵张器在顶枕区的阿尔法活性的调制:磁脑图研究。

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Oscillatory brain activity is known to play an essential role in information processing in working memory. Recent studies have indicated that alpha activity (8–13 Hz) in the parieto-occipital area is strongly modulated in working memory tasks. However, the function of alpha activity in working memory is open to several interpretations, such that alpha activity may be a direct neural correlate of information processing in working memory or may reflect disengagement from information processing in other brain areas. To examine the functional contribution of alpha activity to visuospatial working memory, we introduced visuospatial distractors during a delay period and examined neural activity from the whole brain using magnetoencephalography. The strength of event-related alpha activity was estimated using the temporal spectral evolution (TSE) method. The results were as follows: (1) an increase of alpha activity during the delay period as indicated by elevated TSE curves was observed in parieto-occipital sensors in both the working memory task and a control task that did not require working memory; and (2) an increase of alpha activity during the delay period was not observed when distractors were presented, although TSE curves were constructed only from correct trials. These results indicate that the increase of alpha activity is not directly related to information processing in working memory but rather reflects the disengagement of attention from the visuospatial input.
机译:众所周知,振荡性大脑活动在工作记忆的信息处理中起着至关重要的作用。最近的研究表明,顶枕区域的α活性(8-13 Hz)在工作记忆任务中受到强烈调节。但是,α活性在工作记忆中的功能受到多种解释的欢迎,因此α活性可能是工作记忆中信息处理的直接神经相关因素,或者可能反映了与其他大脑区域信息处理的脱离。为了检查α活动对视觉空间工作记忆的功能性贡献,我们在延迟期内引入了视觉空间分散器,并使用脑磁图检查了整个大脑的神经活动。使用时间光谱演化(TSE)方法估算与事件相关的alpha活性的强度。结果如下:(1)在工作记忆任务和不需要工作记忆的控制任务中,在顶枕传感器中观察到TSE曲线升高表示的延迟时间内α活性增加; (2)尽管存在TSE曲线仅来自正确的试验,但在提出干扰物时未观察到延迟期α活性的增加。这些结果表明,α活动的增加与工作记忆中的信息处理没有直接关系,而是反映了视空间输入中注意力的脱离。

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