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The role of noise in self-organized decision making by the true slime mold Physarum polycephalum

机译:噪声在真正的粘液霉菌多头Phys草自组织决策中的作用

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摘要

Self-organized mechanisms are frequently encountered in nature and known to achieve flexible, adaptive control and decision-making. Noise plays a crucial role in such systems: It can enable a self-organized system to reliably adapt to short-term changes in the environment while maintaining a generally stable behavior. This is fundamental in biological systems because they must strike a delicate balance between stable and flexible behavior. In the present paper we analyse the role of noise in the decision-making of the true slime mold Physarum polycephalum, an important model species for the investigation of computational abilities in simple organisms. We propose a simple biological experiment to investigate the reaction of P. polycephalum to time-variant risk factors and present a stochastic extension of an established mathematical model for P. polycephalum to analyze this experiment. It predicts that-due to the mechanism of stochastic resonance D noise can enable P. polycephalum to correctly assess time-variant risk factors, while the corresponding noise-free system fails to do so. Beyond the study of P. polycephalum we demonstrate that the influence of noise on self-organized decision-making is not tied to a specific organism. Rather it is a general property of the underlying process dynamics, which appears to be universal across a wide range of systems. Our study thus provides further evidence that stochastic resonance is a fundamental component of the decision-making in self-organized macroscopic and microscopic groups and organisms.
机译:自组织机制在自然界中经常遇到,已知可以实现灵活的自适应控制和决策。噪声在此类系统中起着至关重要的作用:它可以使自组织系统可靠地适应环境中的短期变化,同时保持总体上稳定的行为。这在生物系统中至关重要,因为它们必须在稳定和灵活的行为之间达成微妙的平衡。在本文中,我们分析了噪声在真正的粘液霉菌多头Phys的决策中的作用,这是研究简单生物的计算能力的重要模型物种。我们提出了一个简单的生物学实验,以研究多头体育对时变危险因素的反应,并提出了建立的多头体育数学模型的随机扩展,以分析该实验。它预测,由于随机共振的机制,D噪声可以使多头疟原虫正确评估随时间变化的危险因素,而相应的无噪声系统则无法做到这一点。除了对多头体育的研究以外,我们还证明了噪声对自组织决策的影响与特定生物无关。而是它是基础过程动力学的一般属性,似乎在广泛的系统中是通用的。因此,我们的研究提供了进一步的证据,即随机共振是自组织的宏观和微观群体以及有机体决策的基本组成部分。

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