绘制瑞典家禽感染高致病性禽流感的风险图。

IF 2.2 2区 农林科学 Q1 VETERINARY SCIENCES Preventive veterinary medicine Pub Date : 2024-06-29 DOI:10.1016/j.prevetmed.2024.106260
Pascale Stiles , Malin Grant , Hyeyoung Kim , Arianna Comin , Mikael Svensson , Johan Nilsson , Maria Nöremark
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引用次数: 0

摘要

近年来,高致病性禽流感(HPAI)的爆发给全球和瑞典的国家政府和家禽业造成了严重的经济影响。兽医当局可在高致病性禽流感高风险地区实施预防措施,如强制家禽室内饲养。本研究的目的是利用现有数据源,对瑞典家禽从野禽中感染高致病性禽流感病毒(HPAIV)的风险进行时空测绘。采用栅格计算方法评估瑞典家禽感染高致病性禽流感病毒的时空风险。首先根据 2016 年 10 月至 2021 年 9 月的数据,利用四个风险因素计算出每个 5 千米乘 5 千米单元的高致病性禽流感环境感染压力,这四个风险因素是:选定种类的野生鸟类密度、气温、农业作为土地覆盖物的存在以及野生鸟类中是否存在高致病性禽流感。根据专家意见对每个风险因素的相对重要性进行了加权。然后将估计的环境感染压力与家禽种群密度相乘,得出家禽感染高致病性禽流感的风险值。结果显示,全国和地方的风险差异都很大。在环境感染压力、家禽感染风险和检测到的高致病性禽流感疫情方面,斯科纳和厄斯特哥特兰的情况尤为突出。另一方面,一些被确定为家禽传入风险较高的县却从未爆发过疫情。一种可能的解释是,瑞典不同地区的家禽生产类型存在差异。这些结果表明,瑞典全国和地方家禽感染高致病性禽流感病毒的风险差异很大,这将支持瑞典采取比以往更有针对性的强制性预防措施。鉴于欧洲和全球当前不断变化的高致病性禽流感形势,随着病毒在不同野生鸟类物种中的演变和循环,有必要不断更新风险地图。研究还确定了在数据使用和数据可用性方面需要改进的领域,例如改进家禽登记册、纳入公民报告的野鸟死亡率、标准化野鸟调查数据、野鸟迁徙数据以及正在进行的风险因素研究结果。
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Mapping the risk of introduction of highly pathogenic avian influenza to Swedish poultry

Outbreaks of highly pathogenic avian influenza (HPAI) have resulted in severe economic impact for national governments and poultry industries globally and in Sweden in recent years. Veterinary authorities can enforce prevention measures, e.g. mandatory indoor housing of poultry, in HPAI high-risk areas. The aim of this study was to conduct a spatiotemporal mapping of the risk of introduction of highly pathogenic avian influenza virus (HPAIV) to Swedish poultry from wild birds, utilising existing data sources. A raster calculation method was used to assess the spatiotemporal risk of introduction of HPAIV to Swedish poultry. The environmental infectious pressure of HPAIV was first calculated in each 5 km by 5 km cell using four risk factors: density of selected species of wild birds, air temperature, presence of agriculture as land cover and presence of HPAI in wild birds based on data from October 2016-September 2021. The relative importance of each risk factor was weighted based on opinion of experts. The estimated environmental infectious pressure was then multiplied with poultry population density to obtain risk values for risk of introduction of HPAIV to poultry. The results showed a large variation in risk both on national and local level. The counties of Skåne and Östergötland particularly stood out regarding environmental infectious pressure, risk of introduction to poultry and detected outbreaks of HPAI. On the other hand, there were counties, identified as having higher risk of introduction to poultry which never experienced any outbreaks. A possible explanation is the variation in poultry production types present in different areas of Sweden. These results indicate that the national and local variation in risk for HPAIV introduction to poultry in Sweden is high, and this would support more targeted compulsory prevention measures than what has previously been employed in Sweden. With the current and evolving HPAI situation in Europe and on the global level, there is a need for continuous updates to the risk map as the virus evolves and circulates in different wild bird species. The study also identified areas of improvement, in relation to data use and data availability, e.g. improvements to poultry registers, inclusion of citizen reported mortality in wild birds, data from standardised wild bird surveys, wild bird migration data as well as results from ongoing risk-factor studies.

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来源期刊
Preventive veterinary medicine
Preventive veterinary medicine 农林科学-兽医学
CiteScore
5.60
自引率
7.70%
发文量
184
审稿时长
3 months
期刊介绍: Preventive Veterinary Medicine is one of the leading international resources for scientific reports on animal health programs and preventive veterinary medicine. The journal follows the guidelines for standardizing and strengthening the reporting of biomedical research which are available from the CONSORT, MOOSE, PRISMA, REFLECT, STARD, and STROBE statements. The journal focuses on: Epidemiology of health events relevant to domestic and wild animals; Economic impacts of epidemic and endemic animal and zoonotic diseases; Latest methods and approaches in veterinary epidemiology; Disease and infection control or eradication measures; The "One Health" concept and the relationships between veterinary medicine, human health, animal-production systems, and the environment; Development of new techniques in surveillance systems and diagnosis; Evaluation and control of diseases in animal populations.
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