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牛只贸易流动的动态模式。

Dynamical patterns of cattle trade movements.

机构信息

Computational Epidemiology Laboratory, Institute for Scientific Interchange, Torino, Italy.

出版信息

PLoS One. 2011;6(5):e19869. doi: 10.1371/journal.pone.0019869. Epub 2011 May 18.

Abstract

Despite their importance for the spread of zoonotic diseases, our understanding of the dynamical aspects characterizing the movements of farmed animal populations remains limited as these systems are traditionally studied as static objects and through simplified approximations. By leveraging on the network science approach, here we are able for the first time to fully analyze the longitudinal dataset of Italian cattle movements that reports the mobility of individual animals among farms on a daily basis. The complexity and inter-relations between topology, function and dynamical nature of the system are characterized at different spatial and time resolutions, in order to uncover patterns and vulnerabilities fundamental for the definition of targeted prevention and control measures for zoonotic diseases. Results show how the stationarity of statistical distributions coexists with a strong and non-trivial evolutionary dynamics at the node and link levels, on all timescales. Traditional static views of the displacement network hide important patterns of structural changes affecting nodes' centrality and farms' spreading potential, thus limiting the efficiency of interventions based on partial longitudinal information. By fully taking into account the longitudinal dimension, we propose a novel definition of dynamical motifs that is able to uncover the presence of a temporal arrow describing the evolution of the system and the causality patterns of its displacements, shedding light on mechanisms that may play a crucial role in the definition of preventive actions.

摘要

尽管农场动物种群的流动对于人畜共患病的传播至关重要,但由于这些系统通常被视为静态对象,并通过简化的近似方法进行研究,因此我们对描述其流动的动态特征的理解仍然有限。通过利用网络科学方法,我们首次能够全面分析意大利牛群流动的纵向数据集,该数据集每天报告动物个体在农场之间的移动情况。在不同的空间和时间分辨率下,对系统的拓扑结构、功能和动态特性之间的复杂性和相互关系进行了表征,以揭示对于人畜共患病的有针对性的预防和控制措施的定义具有基础性的模式和脆弱性。结果表明,在所有时间尺度上,统计分布的稳定性与节点和链路级别上强大而复杂的演化动态共存。对于位移网络的传统静态观点掩盖了影响节点中心性和农场传播潜力的重要结构变化模式,从而限制了基于部分纵向信息的干预措施的效率。通过充分考虑纵向维度,我们提出了一种新的动态模式定义,能够揭示描述系统演变和位移因果模式的时间箭头的存在,揭示可能在预防性措施的定义中发挥关键作用的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fe5/3097215/2566ad634b9b/pone.0019869.g001.jpg

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