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对打破合作有重大影响的节点定义了一种新的中心性度量方法:博弈中心性。

Nodes having a major influence to break cooperation define a novel centrality measure: game centrality.

机构信息

Department of Medical Chemistry, Semmelweis University, Budapest, Hungary.

出版信息

PLoS One. 2013 Jun 28;8(6):e67159. doi: 10.1371/journal.pone.0067159. Print 2013.

Abstract

Cooperation played a significant role in the self-organization and evolution of living organisms. Both network topology and the initial position of cooperators heavily affect the cooperation of social dilemma games. We developed a novel simulation program package, called 'NetworGame', which is able to simulate any type of social dilemma games on any model, or real world networks with any assignment of initial cooperation or defection strategies to network nodes. The ability of initially defecting single nodes to break overall cooperation was called as 'game centrality'. The efficiency of this measure was verified on well-known social networks, and was extended to 'protein games', i.e. the simulation of cooperation between proteins, or their amino acids. Hubs and in particular, party hubs of yeast protein-protein interaction networks had a large influence to convert the cooperation of other nodes to defection. Simulations on methionyl-tRNA synthetase protein structure network indicated an increased influence of nodes belonging to intra-protein signaling pathways on breaking cooperation. The efficiency of single, initially defecting nodes to convert the cooperation of other nodes to defection in social dilemma games may be an important measure to predict the importance of nodes in the integration and regulation of complex systems. Game centrality may help to design more efficient interventions to cellular networks (in forms of drugs), to ecosystems and social networks.

摘要

合作在生物的自组织和进化中起着重要作用。网络拓扑结构和合作者的初始位置都严重影响社会困境博弈中的合作。我们开发了一个新的模拟程序包,称为“NetworGame”,它能够模拟任何类型的社会困境游戏,在任何模型上,或具有任何将初始合作或背叛策略分配给网络节点的真实世界网络上。最初的背叛者打破整体合作的能力称为“博弈中心性”。该措施的效率在著名的社交网络上得到了验证,并扩展到“蛋白质博弈”,即蛋白质之间或其氨基酸之间的合作模拟。酵母蛋白-蛋白相互作用网络的枢纽,特别是党派枢纽,对将其他节点的合作转变为背叛有很大影响。对甲硫氨酰-tRNA 合成酶蛋白结构网络的模拟表明,属于蛋白质内信号通路的节点对打破合作的影响增加。在社会困境博弈中,单个最初背叛的节点将其他节点的合作转变为背叛的效率可能是预测复杂系统整合和调节中节点重要性的重要指标。博弈中心性可能有助于设计更有效的细胞网络(以药物形式)、生态系统和社交网络的干预措施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f30/3696096/576f901c37ca/pone.0067159.g001.jpg

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