Demšar Urška, Long Jed A
1School of Geography & Sustainable Development, University of St Andrews, Irvine Building, North Street, Scotland, St Andrews KY16 9AL UK.
2Department of Geography, Western University, London, ON Canada.
Mov Ecol. 2019 Apr 29;7:14. doi: 10.1186/s40462-019-0158-4. eCollection 2019.
Many animals move in three dimensions and many animal tracking studies collect the data on their movement in three physical dimensions. However, there is a lack of approaches that consider the vertical dimension when estimating animal space use, which is problematic, as this can lead to mistakes in quantification of spatial differentiation, level of interaction between individuals or species, and the use of resources at different vertical levels.
This paper introduces a new geometric estimator for space use in 3D, the Potential Path Volume (PPV). The concept is based on time geography and generalises the accessibility measure, the Potential Path Area (PPA) into three dimensions. We derive the PPV mathematically and present an algorithm for their calculation.
We demonstrate the use of the PPV in a case study using an open data set of 3D bird tracking data. We also calculate the size of the PPV to see how this corresponds to trip type (specifically, we calculate PPV sizes for departure/return foraging trips from/to a colony) and evaluate the effect of the temporal sampling on the PPV size. PPV sizes increase with the increased temporal resolution, but we do not see the expected pattern than return PPV should be smaller than departure PPV. We further discuss the problem of different speeds in vertical and horizontal directions that are typical for animal movement and to address this rescale the PPV with the ratio of the two speeds.
The PPV method represents a new tool for space use analysis in movement ecology where object movement occurs in three dimensions, and one which can be extended to numerous different application areas.
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许多动物在三维空间中移动,许多动物追踪研究收集它们在三个物理维度上的运动数据。然而,在估计动物空间利用时,缺乏考虑垂直维度的方法,这是个问题,因为这可能导致在量化空间差异、个体或物种之间的相互作用水平以及不同垂直层面的资源利用方面出现错误。
本文介绍了一种用于三维空间利用的新几何估计器——潜在路径体积(PPV)。该概念基于时间地理学,将可达性度量潜在路径面积(PPA)推广到三维。我们从数学上推导了PPV,并给出了其计算算法。
我们在一个案例研究中展示了PPV的应用,该案例使用了一个三维鸟类追踪数据的开放数据集。我们还计算了PPV的大小,以观察其与行程类型的对应关系(具体而言,我们计算了往返觅食行程从/到栖息地的PPV大小),并评估了时间采样对PPV大小的影响。PPV大小随时间分辨率的提高而增加,但我们没有看到预期的模式,即返回的PPV应该小于出发的PPV。我们进一步讨论了动物运动中典型的垂直和水平方向不同速度的问题,并通过两种速度的比率对PPV进行重新缩放来解决这个问题。
PPV方法是运动生态学中三维物体运动空间利用分析的一种新工具,并且可以扩展到许多不同的应用领域。
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