Rhythm-based Brain Computation Unit, RIKEN BSI-TOYOTA Collaboration Center, RIKEN Brain Science Institute, Saitama, Japan.
Soc Cogn Affect Neurosci. 2013 Jun;8(5):523-30. doi: 10.1093/scan/nss027. Epub 2012 Feb 20.
Visual working memory (VWM) capacity is affected by motivational influences; however, little is known about how reward-related brain activities facilitate the VWM systems. To investigate the dynamic relationship between VWM- and reward-related brain activities, we conducted time-frequency analyses using electroencephalograph (EEG) data obtained during a monetary-incentive delayed-response task that required participants to memorize the position of colored disks. In case of a correct answer, participants received a monetary reward (0, 10 or 50 Japanese yen) announced at the beginning of each trial. Behavioral results showed that VWM capacity under high-reward condition significantly increased compared with that under low- or no-reward condition. EEG results showed that frontal theta (6 Hz) amplitudes enhanced during delay periods and positively correlated with VWM capacity, indicating involvement of theta local synchronizations in VWM. Moreover, frontal beta activities (24 Hz) were identified as reward-related activities, because delay-period amplitudes correlated with increases in VWM capacity between high-reward and no-reward conditions. Interestingly, cross-frequency couplings between frontal theta and beta phases were observed only under high-reward conditions. These findings suggest that the functional dynamic linking between VWM-related theta and reward-related beta activities on the frontal regions plays an integral role in facilitating increases in VWM capacity.
视觉工作记忆 (VWM) 容量受动机影响;然而,关于奖励相关的大脑活动如何促进 VWM 系统知之甚少。为了研究 VWM 和奖励相关的大脑活动之间的动态关系,我们使用脑电图 (EEG) 数据进行了时频分析,这些数据是在一项需要参与者记住彩色圆盘位置的金钱激励延迟反应任务中获得的。如果回答正确,参与者将在每次试验开始时获得金钱奖励(0、10 或 50 日元)。行为结果表明,高奖励条件下的 VWM 容量明显高于低奖励或无奖励条件下的 VWM 容量。脑电图结果表明,额叶 theta(6 Hz)振幅在延迟期间增强,与 VWM 容量呈正相关,表明 theta 局部同步在 VWM 中起作用。此外,额叶β活动(24 Hz)被确定为奖励相关活动,因为延迟期间的振幅与高奖励和无奖励条件之间 VWM 容量的增加相关。有趣的是,仅在高奖励条件下观察到额叶 theta 和 beta 相位之间的交叉频率耦合。这些发现表明,额叶区域 VWM 相关 theta 和奖励相关 beta 活动之间的功能动态联系在促进 VWM 容量增加方面起着至关重要的作用。