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Homological scaffolds of brain functional networks

机译:脑功能网络的同源支架

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摘要

Networks, as efficient representations of complex systems, have appealed to scientists for a long time and now permeate many areas of science, including neuroimaging (Bullmore and Sporns 2009 Nat. Rev. Neurosci. >10, 186–198. ()). Traditionally, the structure of complex networks has been studied through their statistical properties and metrics concerned with node and link properties, e.g. degree-distribution, node centrality and modularity. Here, we study the characteristics of functional brain networks at the mesoscopic level from a novel perspective that highlights the role of inhomogeneities in the fabric of functional connections. This can be done by focusing on the features of a set of topological objects—homological cycles—associated with the weighted functional network. We leverage the detected topological information to define the homological scaffolds, a new set of objects designed to represent compactly the homological features of the correlation network and simultaneously make their homological properties amenable to networks theoretical methods. As a proof of principle, we apply these tools to compare resting-state functional brain activity in 15 healthy volunteers after intravenous infusion of placebo and psilocybin—the main psychoactive component of magic mushrooms. The results show that the homological structure of the brain's functional patterns undergoes a dramatic change post-psilocybin, characterized by the appearance of many transient structures of low stability and of a small number of persistent ones that are not observed in the case of placebo.
机译:网络作为复杂系统的有效表示,在很长一段时间以来一直吸引着科学家,现在已经渗透到许多领域,包括神经影像学(Bullmore and Sporns 2009 Nat。Rev. Neurosci。> 10 ,186-198)。 ())。传统上,已经通过复杂网络的统计特性和与节点和链路特性有关的度量来研究复杂网络的结构,例如度分布,节点中心性和模块化。在这里,我们从一个新的视角研究介观水平的功能性大脑网络的特征,该观点突出了功能连接结构中不均匀性的作用。这可以通过关注与加权功能网络关联的一组拓扑对象的特性(同调循环)来完成。我们利用检测到的拓扑信息来定义同源支架,这是一组新对象,旨在紧凑地表示相关网络的同源特征,同时使它们的同源性适合网络理论方法。作为原理证明,我们使用这些工具比较了15名健康志愿者在静注安慰剂和psilocybin(神奇蘑菇的主要精神活性成分)后静息状态下的大脑活动。结果表明,在倍半新霉素后,大脑功能模式的同源结构发生了戏剧性的变化,其特征是出现了许多低稳定性的短暂结构和少量持久性结构,在安慰剂的情况下没有观察到。

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