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Monitoring techniques in the capture and adoption of dogs and cats

机译:捕获和收养猫狗的监测技术

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The continuous improvement of the information systems of organizations that work toward the control of stray dog and cat populations facilitates the implementation of programs aimed at reducing the number of animals that roam free in public streets. This study aimed to present techniques to improve the understanding of the spatial distribution of stray dogs and cats and of people who adopt these animals and the fate of these animals in zoonosis control centers (ZCC). Ripley’s K function was used with a Euclidean distance graph to detect the distribution pattern of dogs and cats captured and of the people who adopted these animals. An estimate of the kernel density was used to allow a better assessment of the spatial distribution of the phenomenon studied. The results showed that the distribution of captured animals and of the people who adopted these animals form a spatial cluster (p = 0.01). Most of the animals were captured near the premises of the ZCC and near the downtown area. Factors such as the abandonment of animals near animal control agencies and the availability of food sources are the main hypotheses associated to the distribution of the captures. The awareness of the people who live in places where there is a greater number of stray animals and the distribution of the urban population are the main hypotheses to explain the distribution of the adoptions. The results will help to implement control measures over these populations in the most problematic areas.
机译:致力于控制流浪狗和猫种群的组织信息系统的不断改进,促进了旨在减少在公共街道上自由漫游的动物数量的计划的实施。这项研究旨在提出技术,以提高对流浪狗和猫以及收养这些动物的人的空间分布以及在动物传染病控制中心(ZCC)中这些动物的命运的了解。里普利(Ripley)的K函数与欧几里得距离图一起使用,可以检测捕获的狗和猫以及收养这些动物的人的分布方式。内核密度的估计值用于更好地评估所研究现象的空间分布。结果表明,捕获的动物和采用这些动物的人的分布形成一个空间簇(p = 0.01)。大多数动物是在ZCC房屋附近和市中心附近被捕的。与捕获物分布有关的主要假设是诸如动物控制机构附近的动物被遗弃和食物来源的可获得性等因素。居住在流浪动物数量较多的地方的人们的意识以及城市人口的分布是解释收养分布的主要假设。结果将有助于对最有问题的地区的这些人群实施控制措施。

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