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Anticorrelations between Active Brain Regions: An Agent-Based Model Simulation Study

机译:大脑活动区域之间的反相关:基于Agent的模型仿真研究

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摘要

Anticorrelations among brain areas observed in fMRI acquisitions under resting state are not endowed with a well-defined set of characters. Some evidence points to a possible physiological role for them, and simulation models showed that it is appropriate to explore such an issue. A large-scale brain representation was considered, implementing an agent-based brain-inspired model (ABBM) incorporating the SER (susceptible-excited-refractory) cyclic mechanism of state change. The experimental data used for validation included 30 selected functional images of healthy controls from the 1000 Functional Connectomes Classic collection. To study how different fractions of positive and negative connectivities could modulate the model efficiency, the correlation coefficient was systematically used to check the goodness-of-fit of empirical data by simulations under different combinations of parameters. The results show that a small fraction of positive connectivity is necessary to match at best the empirical data. Similarly, a goodness-of-fit improvement was observed upon addition of negative links to an initial pattern of only-positive connections, indicating a significant information intrinsic to negative links. As a general conclusion, anticorrelations showed that it is crucial to improve the performance of our simulation and, since these cannot be assimilated to noise, should be always considered in order to refine any brain functional model.
机译:在静息状态下在功能磁共振成像采集中观察到的大脑区域之间的反相关性不具有明确定义的字符集。一些证据表明它们可能具有生理作用,并且模拟模型表明探索此类问题是适当的。考虑了大规模的大脑表征,它实现了一种基于主体的大脑启发模型(ABBM),该模型结合了状态变化的SER(易感性-难治性)循环机制。用于验证的实验数据包括从1000个功能齐全的Connectomes Classic系列中选择的30个健康对照的功能图像。为了研究不同程度的正负连接性如何调节模型效率,通过在不同参数组合下进行仿真,系统地使用相关系数来检查经验数据的拟合优度。结果表明,只有很小一部分正连通性才能最好地匹配经验数据。同样,将负链接添加到仅正连接的初始模式后,观察到拟合优度得到改善,表明负链接固有的重要信息。总体而言,反相关性表明提高模拟性能至关重要,并且由于不能将它们与噪声相提并论,因此应始终考虑它们以完善任何大脑功能模型。

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