Long-Term Electrophysiological and Behavioral Analysis on the Improvement of Visual Working Memory Load, Training Gains, and Transfer Benefits.

Ching-Chang Kuo, Cheng Zhang, Robert A Rissman, Alan W L Chiu
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引用次数: 9

Abstract

Recent evidence demonstrates that with training, one can enhance visual working memory (VWM) capacity and attention over time in the near transfer tasks. Not only do these studies reveal the characteristics of VWM load and the influences of training, they may also provide insights into developing effective rehabilitation for patients with VWM deficiencies. However, few studies have investigated VWM over extended periods of time and evaluated transfer benefits on non-trained tasks. Here, we combined behavioral and electroencephalographical approaches to investigate VWM load, training gains, and transfer benefits. Our results reveal that VWM capacity is directly correlated to the difference of event-related potential waveforms. In particular, the "magic number 4" can be observed through the contralateral delay amplitude and the average capacity is 3.25-item over 15 participants. Furthermore, our findings indicate that VWM capacity can be improved through training; and after training exercises, participants from the training group are able to dramatically improve their performance. Likewise, the training effects on non-trained tasks can also be observed at the 12th week after training. Therefore, we conclude that participants can benefit from training gains, and augmented VWM capacity sustained over long periods of time on specific variety of tasks.

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视觉工作记忆负荷、训练增益和转移效益的长期电生理和行为分析。
最近的证据表明,通过训练,一个人可以在近转移任务中增强视觉工作记忆(VWM)的能力和注意力。这些研究不仅揭示了VWM负荷的特点和训练的影响,还可能为VWM缺乏患者制定有效的康复方案提供见解。然而,很少有研究调查了长时间的VWM,并评估了非训练任务的迁移效益。在这里,我们结合行为和脑电图方法来调查VWM负荷、训练收益和转移效益。结果表明,VWM容量与事件相关电位波形的差异直接相关。特别是,通过对侧延迟幅度可以观察到“幻数4”,平均容量为3.25个项目/ 15名参与者。此外,我们的研究结果表明,VWM能力可以通过培训来提高;经过训练后,训练组的参与者能够显著提高他们的表现。同样,在训练后的第12周,也可以观察到训练对非训练任务的影响。因此,我们得出结论,参与者可以从训练中获益,并在特定任务的长时间内持续增强VWM能力。
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