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Search efficiency of biased migration towards stationary or moving targets in heterogeneously structured environments

机译:在异构结构环境中搜索偏置或移动目标的偏见迁移的效率

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Efficient search acts as a strong selective force in biological systems ranging from cellular populations to predator-prey systems. The search processes commonly involve finding a stationary or mobile target within a heterogeneously structured environment where obstacles limit migration. An open generic question is whether random or directionally biased motions or a combination of both provide an optimal search efficiency and how that depends on the motility and density of targets and obstacles. To address this question, we develop a simple model that involves a random walker searching for its targets in a heterogeneous medium of bond percolation square lattice and used mean first passage time () as an indication of average search time. Our analysis reveals a dual effect of directional bias on the minimum value of . For a homogeneous medium, directionality always decreases and a pure directional migration (a ballistic motion) serves as the optimized strategy, while for a heterogeneous environment, we find that the optimized strategy involves a combination of directed and random migrations. The relative contribution of these modes is determined by the density of obstacles and motility of targets. Existence of randomness and motility of targets add to the efficiency of search. Our study reveals generic and simple rules that govern search efficiency. Our findings might find application in a number of areas including immunology, cell biology, ecology, and robotics.
机译:有效的搜索作为生物系统中的强烈选择性,从蜂窝种群到捕食者 - 猎物系统。搜索过程通常涉及在异构结构化环境中找到静止或移动目标,其中障碍限制迁移。开放的通用问题是无论是随机还是定向偏置的运动或两者的组合提供了最佳的搜索效率以及这取决于目标和障碍的动力和密度。为了解决这个问题,我们开发了一个简单的模型,涉及随机步行者在粘合渗透方格的异构介质中寻找其目标,并使用平均第一通道时间()作为平均搜索时间的指示。我们的分析揭示了定向偏差对的最小值的双重影响。对于均匀的介质,方向性总是减小并且纯定向迁移(弹道运动)用作优化的策略,而对于异质环境,我们发现优化的策略涉及定向和随机迁移的组合。这些模式的相对贡献由靶标的障碍和运动的密度决定。目标的存在性和目标的动机增添了搜索效率。我们的研究揭示了管理搜索效率的通用和简单规则。我们的研究结果可能在包括免疫学,细胞生物学,生态学和机器人的许多领域中申请。

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  • 来源
    《PHYSICAL REVIEW E 》 |2017年第6期| 062415.1-062415.11| 共11页
  • 作者单位

    Department of Physics University of Tehran Tehran 14395-547 Iran Leiden Academic Centre for Drug Research Faculty of Mathematics and Natural Sciences Leiden University Leiden 2300 RA The Netherlands;

    Leiden Academic Centre for Drug Research Faculty of Mathematics and Natural Sciences Leiden University Leiden 2300 RA The Netherlands;

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