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Rehearsing Biological Motion in Working Memory: An EEG Study

机译:在工作记忆中练习生物运动:一项脑电图研究

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摘要

Holding biological motion (BM), the movements of animate entities, in working memory (WM) is important to our daily social life. However, how BM is maintained in WM remains unknown. The current study investigated this issue and hypothesized that, analogous to BM perception, the human mirror neuron system (MNS) is involved in rehearsing BM in WM. To examine the MNS hypothesis of BM rehearsal, we used an EEG index of mu suppression (8–12 Hz), which has been linked to the MNS. Using a change detection task, we manipulated the BM memory load in three experiments. We predicted that mu suppression in the maintenance phase of WM would be modulated by the BM memory load; moreover, a negative correlation between the number of BM stimuli in WM and the degree of mu suppression may emerge. The results of Experiment 1 were in line with our predictions and revealed that mu suppression increased as the memory load increased from two to four BM stimuli; however, mu suppression then plateaued, as WM could only hold, at most, four BM stimuli. Moreover, the predicted negative correlation was observed. Corroborating the findings of Experiment 1, Experiment 2 further demonstrated that once participants used verbal codes to process the motion information, the mu suppression or modulation by memory load vanished. Finally, Experiment 3 demonstrated that the findings in Experiment 1 were not limited to one specific type of stimuli. Together, these results provide evidence that the MNS underlies the process of rehearsing BM in WM.
机译:在工作记忆(WM)中,保持生物运动(BM)和有生命的实体的运动对我们的日常社交生活很重要。但是,如何在WM中保持BM仍然未知。当前的研究对此问题进行了调查,并假设类似于BM感知,人类镜像神经元系统(MNS)参与了WM中的BM演练。为了检验BM彩排的MNS假设,我们使用了与MNS相关的mu抑制(8–12 Hz)的EEG指数。使用更改检测任务,我们在三个实验中操纵了BM内存负载。我们预测,WM维护阶段的mu抑制将由BM内存负载来调节;此外,WM中的BM刺激次数与mu抑制程度之间可能存在负相关。实验1的结果与我们的预测相符,并且表明随着记忆负荷从2个BM刺激增加到4个BM刺激,mu抑制作用增加。然而,μ抑制随后趋于平稳,因为WM最多只能容纳四个BM刺激。此外,观察到预测的负相关。证实实验1的结果,实验2进一步证明,一旦参与者使用口头代码来处理运动信息,μ的抑制或通过内存负载的调制就消失了。最后,实验3证明实验1中的发现不限于一种特定类型的刺激。总之,这些结果提供了证据,表明MNS是WM中BM排练过程的基础。

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