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Neuronal avalanches in complex networks

机译:复杂网络中的神经元雪崩

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Brain networks are neither regular nor random. Their structure allows for optimal information processing and transmission across the entire neural substrate of an organism. However, for topological features to be appropriately harnessed, brain networks should implement a dynamical regime which prevents phase-locked and chaotic behaviour. Critical neural dynamics refer to a dynamical regime in which the system is poised at the boundary between regularity and randomness. It has been reported that neural systems poised at this boundary achieve maximum computational power. In this paper, we review recent results regarding critical neural dynamics that emerge from systems whose underlying structure exhibits complex network properties.
机译:脑网络既不是规则的也不是随机的。它们的结构可实现最佳的信息处理,并能在生物的整个神经基质中进行传输。但是,为了适当地利用拓扑特征,大脑网络应实施防止相锁和混乱行为的动态机制。临界神经动力学是指一种动态状态,其中系统处于规则性和随机性之间的边界。据报道,处于该边界的神经系统达到了最大的计算能力。在本文中,我们回顾了有关关键神经动力学的最新结果,这些神经动力​​学是从其底层结构具有复杂网络特性的系统中产生的。

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