摘要翻译:
考虑到关于吉格纳猫的行为习性的资料很少,也很少进行调查,在调查中捕获小种群,在它们身上放置放射性颈,然后在捕获它们的地方释放它们,目的是收集关于它们在一个领土上的位置的数据,从而估计它们通常旅行的平均距离。假设guignas在特定区域保持久坐不动的行为,本文提出了一种利用随机步行器模拟区域内点分布的方法,以模拟通过在guignas种群中放置放射性颈而获得的数据分布,用它可以估计离开某一固定位置的平均距离,以及它们可能与领土上具有高致命概率的点之间的相互作用,如农场、狗群、道路、城市地区等。有必要提到的是,通过借助卫星图像估计guignas种群可能与领土上可能的捕食者之间的相互作用,有可能评估领土上对guignas种群具有潜在致命风险的点,从而制定有助于保护它们的重新安置战略。
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英文标题:
《Simulation of the behavior of the Leopardus guigna using random walkers》
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作者:
A. Torres-Hernandez, Byron C. Guzm\'an, Melanie Kaiser, Julio C.
Hern\'andez
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最新提交年份:
2021
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分类信息:
一级分类:Physics 物理学
二级分类:Physics and Society 物理学与社会
分类描述:Structure, dynamics and collective behavior of societies and groups (human or otherwise). Quantitative analysis of social networks and other complex networks. Physics and engineering of infrastructure and systems of broad societal impact (e.g., energy grids, transportation networks).
社会和团体(人类或其他)的结构、动态和集体行为。社会网络和其他复杂网络的定量分析。具有广泛社会影响的基础设施和系统(如能源网、运输网络)的物理和工程。
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一级分类:Physics 物理学
二级分类:Biological Physics 生物物理学
分类描述:Molecular biophysics, cellular biophysics, neurological biophysics, membrane biophysics, single-molecule biophysics, ecological biophysics, quantum phenomena in biological systems (quantum biophysics), theoretical biophysics, molecular dynamics/modeling and simulation, game theory, biomechanics, bioinformatics, microorganisms, virology, evolution, biophysical methods.
分子生物物理、细胞生物物理、神经生物物理、膜生物物理、单分子生物物理、生态生物物理、生物系统中的量子现象(量子生物物理)、理论生物物理、分子动力学/建模与模拟、博弈论、生物力学、生物信息学、微生物、病毒学、进化论、生物物理方法。
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一级分类:Quantitative Biology 数量生物学
二级分类:Other Quantitative Biology 其他定量生物学
分类描述:Work in quantitative biology that does not fit into the other q-bio classifications
不适合其他q-bio分类的定量生物学工作
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英文摘要:
Considering that there is very little information on the behavior habits of guigna cats, as well as investigations in which small populations are captured to place radiocollars on them and then release them in the place where they were captured, which is done with the intention of collecting data on their positions in a territory and thus make estimates of the mean distances they usually travel. Under the hypothesis that guignas maintain a sedentary behavior in a specific area of a given territory, this paper shows one way to simulate a distribution of points in a territory using random walkers to emulate the distribution of the data that would be obtained by placing radiocollars in a population of guignas, with which it is possible to make estimates of the mean distances that move away from a certain fixed position, and the interactions they can have with points in the territory that represent a high probability of lethality, such as farms, packs of dogs, roads, urban areas, etc. It is necessary to mention that by estimating the possible interactions that a guignas population may have with possible predators in a territory with the help of a satellite image, it is possible to evaluate the points of a territory that represent a potentially lethal risk for the guignas, and thus generate relocation strategies that help preserve them.
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PDF链接:
https://arxiv.org/pdf/2111.03445


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