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Locating Temporal Functional Dynamics of Visual Short-Term Memory Binding using Graph Modular Dirichlet Energy

机译:使用图形模块Dirichlet能量定位视觉短期记忆绑定的时间功能动力学

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摘要

Visual short-term memory binding tasks are a promising early marker for Alzheimer’s disease (AD). To uncover functional deficits of AD in these tasks it is meaningful to first study unimpaired brain function. Electroencephalogram recordings were obtained from encoding and maintenance periods of tasks performed by healthy young volunteers. We probe the task’s transient physiological underpinnings by contrasting shape only (Shape) and shape-colour binding (Bind) conditions, displayed in the left and right sides of the screen, separately. Particularly, we introduce and implement a novel technique named Modular Dirichlet Energy (MDE) which allows robust and flexible analysis of the functional network with unprecedented temporal precision. We find that connectivity in the Bind condition is less integrated with the global network than in the Shape condition in occipital and frontal modules during the encoding period of the right screen condition. Using MDE we are able to discern driving effects in the occipital module between 100–140 ms, coinciding with the P100 visually evoked potential, followed by a driving effect in the frontal module between 140–180 ms, suggesting that the differences found constitute an information processing difference between these modules. This provides temporally precise information over a heterogeneous population in promising tasks for the detection of AD.
机译:视觉短期记忆结合任务是阿尔茨海默氏病(AD)的有希望的早期标记。为了揭示这些任务中AD的功能缺陷,首先研究未受损的脑功能是有意义的。脑电图记录是从健康年轻志愿者执行的任务的编码和维护期间获得的。我们通过仅对比形状(Shape)和形状-颜色绑定(Bind)条件(分别显示在屏幕的左侧和右侧)来探查任务的短暂生理基础。特别是,我们引入并实现了一种名为Modular Dirichlet Energy(MDE)的新技术,该技术可以以前所未有的时间精度对功能网络进行强大而灵活的分析。我们发现,在右侧屏幕条件的编码期间,绑定条件下的连通性与枕形和额叶模块中的Shape条件下相比,与全局网络的集成程度较低。使用MDE,我们能够辨别出枕骨模块在100–140µms之间的驱动效果,与P100的视觉诱发电位相吻合,随后是额叶模块在140–180µms之间的驱动效果,这表明所发现的差异构成了一个信息。这些模块之间的处理差异。这提供了在有前途的任务中用于检测AD的异构种群上的时间精确信息。

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