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Distinguishing between apparent and actual randomness: a preliminary examination with Australian ants

机译:区分明显和实际随机性:与澳大利亚蚂蚁进行初步考试

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The correlated random walk paradigm is the dominant conceptual framework for modeling animal movement patterns. Nonetheless, we do not know whether the randomness is apparent or actual. Apparent randomness could result from individuals reacting to environmental cues and their internal states in accordance with some set of behavioral rules. Here, we show how apparent randomness can result from one simple kind of algorithmic response to environmental cues. This results in an exponential step-length distribution in homogeneous environments and in generalized stretched exponential step-length distributions in more complex fractal environments. We find support for these predictions in the movement patterns of the Australian bull ant Myrmecia midas searching on natural surfaces and on artificial uniform and quasi-fractal surfaces. The bull ants spread their search significantly farther on the quasi-fractal surface than on the uniform surface, showing that search characteristics differed as a function of the substrate on which ants are searching. Further tentative support comes from a re-analysis of Australian desert ants Melophorus bagoti moving on smoothed-over sand and on a more strongly textured surface. Our findings call for more experimental studies on different surfaces to test the surprising predicted linkage between fractal dimension and the exponent in the step-length distribution.
机译:相关随机步行范式是用于建模动物运动模式的主导概念框架。尽管如此,我们不知道随机性是否明显或实际。对于根据某些行为规则,个人可能因对环境提示和内部国家反应而导致的表观随机性。在这里,我们展示了随机性如何从一个简单的算法响应对环境提示产生了明显的随机性。这导致均匀环境中的指数步长分布以及在更复杂的分形环境中的广义拉伸指数步长分布。我们发现对澳大利亚公牛蚂蚁MIDAS的运动模式的预测,寻找天然表面和人工制服和准分形表面。公牛蚂蚁显着扩散到准分形表面上的搜索比在均匀表面上更远,显示搜索特性与蚂蚁正在搜索的基板的函数不同。进一步的暂定支持来自澳大利亚沙漠蚂蚁Melophorus Bagoti的再分析,在平滑于沙滩上和更强烈的纹理表面上移动。我们的研究结果要求对不同表面进行更多实验研究,以测试分形维数和阶梯长度分布中的指数之间的令人惊讶的预测联动。

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