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A revised model of fluid transport optimization in Physarum polycephalum

机译:Physarum polycephalum 中流体运输优化的修订模型

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Optimization of fluid transport in the slime mold Physarum polycephalum has been the subject of several modeling efforts in recent literature. Existing models assume that the tube adaptation mechanism in P. polycephalum's tubular network is controlled by the sheer amount of fluid flow through the tubes. We put forward the hypothesis that the controlling variable may instead be the flow's pressure gradient along the tube. We carry out the stability analysis of such a revised mathematical model for a parallel-edge network, proving that the revised model supports the global flow-optimizing behavior of the slime mold for a substantially wider class of response functions compared to previous models. Simulations also suggest that the same conclusion may be valid for arbitrary network topologies.
机译:优化粘液霉菌 Physarum polycephalum 中的流体传输一直是最近文献中多项建模工作的主题。现有模型假设 P. polycephalum 管状网络中的管适应机制受通过管的流体流量的绝对量控制。我们提出了一个假设,即控制变量可能是沿管子的流动压力梯度。我们对这种修正后的并行边缘网络数学模型进行了稳定性分析,证明修正后的模型支持粘液霉菌的全局流动优化行为,与以前的模型相比,响应函数的类别要大得多。仿真还表明,同样的结论可能适用于任意网络拓扑。

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