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视觉短期记忆容量的大脑振荡基础。

Brain oscillatory substrates of visual short-term memory capacity.

机构信息

Brain Imaging and Neurostimulation Lab, Department of Neurology, Universitätskrankenhaus Hamburg-Eppendorf, University of Hamburg, 20246 Hamburg, Germany.

出版信息

Curr Biol. 2009 Nov 17;19(21):1846-52. doi: 10.1016/j.cub.2009.08.062.

Abstract

The amount of information that can be stored in visual short-term memory is strictly limited to about four items. Therefore, memory capacity relies not only on the successful retention of relevant information but also on efficient suppression of distracting information, visual attention, and executive functions. However, completely separable neural signatures for these memory capacity-limiting factors remain to be identified. Because of its functional diversity, oscillatory brain activity may offer a utile solution. In the present study, we show that capacity-determining mechanisms, namely retention of relevant information and suppression of distracting information, are based on neural substrates independent of each other: the successful maintenance of relevant material in short-term memory is associated with cross-frequency phase synchronization between theta (rhythmical neural activity around 5 Hz) and gamma (> 50 Hz) oscillations at posterior parietal recording sites. On the other hand, electroencephalographic alpha activity (around 10 Hz) predicts memory capacity based on efficient suppression of irrelevant information in short-term memory. Moreover, repetitive transcranial magnetic stimulation at alpha frequency can modulate short-term memory capacity by influencing the ability to suppress distracting information. Taken together, the current study provides evidence for a double dissociation of brain oscillatory correlates of visual short-term memory capacity.

摘要

视觉短期记忆中可储存的信息量严格限制在大约四个项目。因此,记忆容量不仅依赖于相关信息的成功保留,还依赖于对干扰信息、视觉注意力和执行功能的有效抑制。然而,完全可分离的与这些记忆容量限制因素相关的神经特征仍然有待确定。由于其功能多样性,振荡脑活动可能提供了一个有用的解决方案。在本研究中,我们表明,决定容量的机制,即相关信息的保留和干扰信息的抑制,基于彼此独立的神经基质:在后顶叶记录部位,theta(约 5 Hz 的节律性神经活动)和 gamma(>50 Hz)振荡之间的跨频相位同步与短期记忆中相关材料的成功维持有关。另一方面,基于对短期记忆中无关信息的有效抑制,脑电图 alpha 活动(约 10 Hz)预测记忆容量。此外,经颅重复磁刺激 alpha 频率可以通过影响抑制干扰信息的能力来调节短期记忆容量。总之,本研究为视觉短期记忆容量的脑振荡相关物的双重分离提供了证据。

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