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首页> 外文期刊>International Journal of Health Geographics >Agricultural landscape and spatial distribution of Toxoplasma gondii in rural environment: an agent-based model
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Agricultural landscape and spatial distribution of Toxoplasma gondii in rural environment: an agent-based model

机译:农村环境中弓形虫的农业景观和空间分布:基于主体的模型

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Background Predicting the spatial distribution of pathogens with an environmental stage is challenging because of the difficulty to detect them in environmental samples. Among these pathogens, the parasite Toxoplasma gondii is the causative agent of the zoonosis toxoplasmosis, which is responsible for public health issues. Oocysts of T. gondii are excreted by infected cats in the environment, where they may survive and remain infectious for intermediate hosts, specifically rodents, during months to years. The landscape structure that determines the density and distribution of cats may thus impact the spatial distribution of T. gondii. In this study, we investigated the influences of rural settings on the spatial distribution of oocysts in the soil. Method We developed a spatially explicit agent based model to study how landscape structures impact on the spatial distribution of T. gondii prevalence in its rodent intermediate host as well as contamination in the environment. The rural landscape was characterized by the location of farm buildings, which provide shelters and resources for the cats. Specifically, we considered two configurations of farm buildings, i.e. inside and outside a village. Simulations of the first setting, with farm buildings inside the village, were validated using data from previous field studies. Then, simulation results of the two settings were compared to investigate the influences of the farm locations. Results Model predictions showed a steeper relationship between distance to the nearest farm and infection levels when farm buildings, and thus cats, were concentrated in the same area than when the farms were spread over the area. The relationship between distance to the village center and level of environmental contamination also differed between settings with a potential increased risk for inhabitants when farms are located inside the village. Maps of the risk of soil contaminated with oocysts were also derived from the model. Conclusion The agent-based model provides a useful tool to assess the risk of contamination by T. gondii oocysts at a local scale and determine the most at risk areas. Moreover it provides a basis to investigate the spatial dynamics of pathogens with an environmental stage.
机译:背景技术由于难以在环境样本中检测到病原菌,因此在环境阶段预测病原菌的空间分布具有挑战性。在这些病原体中,寄生虫弓形虫是人畜共患病弓形虫病的病原体,人畜共患弓形虫病负责公共卫生问题。弓形虫的卵囊在环境中被感染的猫排出体外,在那里它们可以存活并在几个月到几年的时间内对中间宿主(尤其是啮齿动物)保持传染性。决定猫的密度和分布的景观结构可能会影响弓形虫的空间分布。在这项研究中,我们调查了农村环境对土壤中卵囊空间分布的影响。方法我们开发了一种基于空间显式媒介的模型,以研究景观结构如何影响刚地弓形虫在其啮齿动物中间宿主中的空间分布以及环境污染。乡村景观的特点是农舍的位置,为猫提供了庇护所和资源。具体来说,我们考虑了农场建筑的两种配置,即村庄内部和外部。使用先前田间研究的数据验证了第一环境的模拟,其中包括村庄内的农场建筑。然后,比较这两种设置的模拟结果,以调查农场位置的影响。结果模型预测显示,当农场建筑物(因此猫)集中在同一区域时,到最近农场的距离与感染水平之间的关系要比农场分散在该区域时更紧密。距村庄中心的距离与环境污染程度之间的关系在环境之间也有所不同,当农场位于村庄内部时,居民的潜在风险会增加。该模型还绘制了被卵囊污染的土壤风险图。结论基于代理的模型提供了一个有用的工具,可以在本地范围内评估弓形虫卵囊污染的风险,并确定风险最高的区域。此外,它为研究环境阶段病原体的空间动力学提供了基础。

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