畜牧业压力大地区植物产品人畜共患感染因子的健康风险评估

G. Tradigo, M. Cannataro, P. Guzzi, F. Casalinuovo, P. Veltri, C. Graziani
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引用次数: 2

摘要

在牲畜压力较大的地区,感染原分布的微小变异可对该地区的动物和人类造成灾难性后果。农业和动物健康参数是严格相关的因素,因此,在分析某一地区与动物疾病有关的牧场行为时应考虑到它们。地理信息系统(GIS)是兽医管理数据并发现其位置和空间扩展随时间变化的相关性的可靠工具。地理信息系统可导致新的动物疾病分布模型,从而有助于解释诸如流行病事件或地下水污染等问题。受污染或污染的地区对在该地区生活的畜群有不良影响,作为副作用,对同一地区与动物和植物有关的产品和食物也有不良影响。此外,人类管理的农场中的许多不当行为对人类健康的风险更高。事实上,在混合农场(即同时管理动物和蔬菜作物的农场),动物粪便经常被用来给蔬菜施肥,从而造成致病微生物扩散的潜在风险,污染深层和浅层地下水,或产生更严重的问题。在本文中,我们报告了使用基于GIS技术的工具来监测大型农业区土地利用的项目,其中高质量的土地产品和动物性食品(如牛奶生产或奶酪或肉类);这个想法是为了验证尽管与动物相关的生产高度集中,但与土地相关的农业生产中可能存在细菌或问题。这个想法是利用地理信息系统作为潜在的预防模型来研究(i)农场作为病原体的潜在积累者,(ii)环境(即地面和水)作为来自草药或农场的病原体的收集者,以及(iii)受污染的蔬菜和作物生产作为人类感染的媒介。我们计划使用一个具有查询和空间数据管理功能的通用地理信息系统工具。这种工具称为Geomedica,可以轻松有效地用于设计和实现特别查询。在初步数据集上执行的第一组查询能够验证我们的模型,验证我们假设的正确性,并在地理地图上可视化结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Health risk assessment of zoonotic infections agents through plant products in areas with high livestock pressure
In areas where there is a high livestock pressure, small variabilities in the infection agents distributions can lead to disastrous consequences on the territory for both animals and humans. Agriculture and animal health parameters are strictly correlated factors and as such they should be considered when analysing pasture behaviours for a certain area with respect to animal diseases. A Geographical Information System (GIS) is a solid tool for the veterinary to manage data and find correlations with its location and spatial extension over time. GIS can lead to novel animal disease distribution models, thus helping in the interpretation of, e.g., an epidemic episode or a groundwater contamination. Contaminated or polluted areas have bad effects on herds insisting on that area and, as a side effect, on products and food connected with both animals and plants on the same area. Moreover, many misbehaviours in human-managed farms higher risks for human health. In mixed farms (i.e. where both animals and vegetable crops are managed) in fact, animal droppings are often used to manure vegetables, thus creating a potential risk for the diffusion of pathogenic micro-organisms polluting deep and superficial groundwater or producing even more serious problems. In this paper we report about the project of using a GIS technology-based tool to monitor the land use of a large agricultural area, where high quality land products and animal based foods (such as milk production or cheese or meat); the idea is to verify whereas high concentration of animals related production, are land related with possible bacteria or problems in agricultural productions. The idea is to use GIS as potential prevention models for studying (i) farms as potential accumulators of pathogens, (ii) the environment (i.e. ground and water) as a collector of pathogens coming from herbs or farms and (iii) contaminated vegetable and crop production as a vehicle of infection for humans. We plan to use a tool implemented as a general purpose geographical information system with querying and spatial data management capabilities. Such a tool, called Geomedica, can be used easily and efficiently to design and implement ad hoc queries. A first set of queries performed over the preliminary dataset were able to validate our models and verify the correctness of our assumptions and to visualize results on a geographical map.
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