首页> 美国卫生研究院文献>Frontiers in Human Neuroscience >Lingering Sound: Event-Related Phase-Amplitude Coupling and Phase-Locking in Fronto-Temporo-Parietal Functional Networks During Memory Retrieval of Music Melodies
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Lingering Sound: Event-Related Phase-Amplitude Coupling and Phase-Locking in Fronto-Temporo-Parietal Functional Networks During Memory Retrieval of Music Melodies

机译:持久的声音:音乐旋律的记忆检索过程中额颞颞顶功能网络中与事件相关的相幅耦合和锁相

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摘要

Brain oscillations and connectivity have emerged as promising measures of evaluating memory processes, including encoding, maintenance, and retrieval, as well as the related executive function. Although many studies have addressed the neural mechanisms underlying working memory, most of these studies have focused on the visual modality. Neurodynamics and functional connectivity related to auditory working memory are yet to be established. In this study, we explored the dynamic of high density (128-channel) electroencephalography (EEG) in a musical delayed match-to-sample task (DMST), in which 36 participants were recruited and were instructed to recognize and distinguish the target melodies from similar distractors. Event-related spectral perturbations (ERSPs), event-related phase-amplitude couplings (ERPACs), and phase-locking values (PLVs) were used to determine the corresponding brain oscillations and connectivity. First, we observed that low-frequency oscillations in the frontal, temporal, and parietal regions were increased during the processing of both target and distracting melodies. Second, the cross-frequency coupling between low-frequency phases and high-frequency amplitudes was elevated in the frontal and parietal regions when the participants were distinguishing between the target from distractor, suggesting that the phase-amplitude coupling could be an indicator of neural mechanisms underlying memory retrieval. Finally, phase-locking, an index evaluating brain functional connectivity, revealed that there was fronto-temporal phase-locking in the theta band and fronto-parietal phase-locking in the alpha band during the recognition of the two stimuli. These findings suggest the existence of functional connectivity and the phase-amplitude coupling in the neocortex during musical memory retrieval, and provide a highly resolved timeline to evaluate brain dynamics. Furthermore, the inter-regional phase-locking and phase-amplitude coupling among the frontal, temporal and parietal regions occurred at the very beginning of musical memory retrieval, which might reflect the precise timing when cognitive resources were involved in the retrieval of targets and the rejection of similar distractors. To the best of our knowledge, this is the first EEG study employing a naturalistic task to study auditory memory processes and functional connectivity during memory retrieval, results of which can shed light on the use of natural stimuli in studies that are closer to the real-life applications of cognitive evaluations, mental treatments, and brain-computer interface.
机译:脑振荡和连接性已成为评估记忆过程的有前途的措施,包括编码,维护和检索以及相关的执行功能。尽管许多研究已经探讨了工作记忆的神经机制,但是这些研究大多数都集中在视觉方式上。与听觉工作记忆有关的神经动力学和功能连接性尚未建立。在这项研究中,我们探索了音乐延迟匹配样本任务(DMST)中高密度(128通道)脑电图(EEG)的动态,其中招募了36名参与者,并指示他们识别和区分目标旋律来自类似的干扰因素。事件相关的频谱扰动(ERSP),事件相关的相位振幅耦合(ERPAC)和锁相值(PLV)用于确定相应的大脑振荡和连通性。首先,我们观察到在处理目标旋律和分散旋律时,额叶,颞叶和顶叶区域的低频振荡都增加了。其次,当参与者将目标物与干扰物区分开时,额叶和顶叶区域的低频相位和高频振幅之间的交叉频率耦合增加,表明相位振幅耦合可能是神经机制的指标。基础内存检索。最后,锁相是评估大脑功能连通性的一项指标,显示在识别两种刺激过程中,θ带中存在额颞相锁相,而α带中存在额顶相锁相。这些发现表明,在音乐记忆检索过程中,新皮层中存在功能连通性和相幅耦合,并提供了高度解析的时间表来评估大脑动力学。此外,额叶,颞叶和顶叶区域之间的区域间锁相和相位振幅耦合发生在音乐记忆检索的最开始,这可能反映了认知资源参与目标和目标的检索时的精确时机。拒绝类似的干扰因素。据我们所知,这是第一项采用自然主义任务的脑电图研究,旨在研究记忆检索过程中的听觉记忆过程和功能连接性,其结果可以阐明在与真实情况更接近的研究中使用自然刺激的情况。认知评估,心理治疗和脑机接口的生活应用。

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