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自组织临界状态下噪声局部动力学导致的平均场行为:对神经科学的启示。

Mean-field behavior as a result of noisy local dynamics in self-organized criticality: neuroscience implications.

作者信息

Moosavi S Amin, Montakhab Afshin

机构信息

Department of Physics, College of Sciences, Shiraz University, Shiraz 71946-84795, Iran.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2014 May;89(5):052139. doi: 10.1103/PhysRevE.89.052139. Epub 2014 May 27.

DOI:10.1103/PhysRevE.89.052139
PMID:25353771
Abstract

Motivated by recent experiments in neuroscience which indicate that neuronal avalanches exhibit scale invariant behavior similar to self-organized critical systems, we study the role of noisy (nonconservative) local dynamics on the critical behavior of a sandpile model which can be taken to mimic the dynamics of neuronal avalanches. We find that despite the fact that noise breaks the strict local conservation required to attain criticality, our system exhibits true criticality for a wide range of noise in various dimensions, given that conservation is respected on the average. Although the system remains critical, exhibiting finite-size scaling, the value of critical exponents change depending on the intensity of local noise. Interestingly, for a sufficiently strong noise level, the critical exponents approach and saturate at their mean-field values, consistent with empirical measurements of neuronal avalanches. This is confirmed for both two and three dimensional models. However, the addition of noise does not affect the exponents at the upper critical dimension (D = 4). In addition to an extensive finite-size scaling analysis of our systems, we also employ a useful time-series analysis method to establish true criticality of noisy systems. Finally, we discuss the implications of our work in neuroscience as well as some implications for the general phenomena of criticality in nonequilibrium systems.

摘要

受神经科学近期实验的启发,这些实验表明神经元雪崩呈现出类似于自组织临界系统的尺度不变行为,我们研究了噪声(非保守)局部动力学对沙堆模型临界行为的作用,该模型可用于模拟神经元雪崩的动力学。我们发现,尽管噪声打破了达到临界所需的严格局部守恒,但只要平均而言守恒得到尊重,我们的系统在各种维度的广泛噪声范围内都表现出真正的临界性。尽管系统保持临界状态,呈现出有限尺寸标度,但临界指数的值会根据局部噪声的强度而变化。有趣的是,对于足够强的噪声水平,临界指数接近并饱和于其平均场值,这与神经元雪崩的实证测量结果一致。二维和三维模型均证实了这一点。然而,添加噪声不会影响上临界维度(D = 4)处的指数。除了对我们的系统进行广泛的有限尺寸标度分析外,我们还采用了一种有用的时间序列分析方法来确定噪声系统的真正临界性。最后,我们讨论了我们的工作在神经科学中的意义以及对非平衡系统临界性一般现象的一些启示。

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