高效的边境生物安全检查利用超级传播降低生物入侵风险。

IF 3 3区 医学 Q1 MATHEMATICS, INTERDISCIPLINARY APPLICATIONS Risk Analysis Pub Date : 2024-08-01 Epub Date: 2024-02-08 DOI:10.1111/risa.14277
Raphaël Trouvé, Andrew P Robinson
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引用次数: 0

摘要

生物入侵对生物多样性、粮食安全和经济的威胁日益严重。全球贸易增长带来的压力日益增大,需要提高边境检查效率。在此,我们摒弃了现行检查标准所倡导的逐批托运的传统方法。相反,我们提出了一个更广阔的视角:根据边境检查制度在整个途径中降低传播压力的能力来评估边境检查制度。此外,我们还证明了大多数生物安全途径都表现出超扩散行为,即来自同一途径的货物具有不同的侵扰率,并包含罕见的右尾事件(也称为过度分散)。我们的研究表明,更大的过度分散会导致更明显的收益递减,从而影响采样工作的最优分配。我们利用这两点见解制定了一套简单高效的边境检查制度,与现行标准相比,该制度可显著降低传播压力。我们的分析表明,托运货物的规模是生物安全风险的主要驱动因素,而与托运货物规模的平方根成比例的抽样接近最优。在测试中,与现行标准相比,我们的框架降低了 31% 至 38% 的传播压力。我们还发现了通过考虑更多途径特征(即过度分散参数、零膨胀、相对风险、采样成本、可检测性)来进一步提高检测效率的机会,并为这些更复杂的情况制定了解决方案。我们预计,我们的成果将减轻生物入侵风险,对生物多样性保护、粮食安全和全球经济产生重大影响。
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Efficient border biosecurity inspection leverages superspreading to reduce biological invasion risk.

Biological invasions are a growing threat to biodiversity, food security, and economies. Rising pressure from increased global trade requires improving border inspection efficiency. Here, we depart from the conventional consignment-by-consignment approach advocated in current inspection standards. Instead, we suggest a broader perspective: evaluating border inspection regimes based on their ability to reduce propagule pressure across entire pathways. Additionally, we demonstrate that most biosecurity pathways exhibit superspreading behavior, that is, consignments from the same pathway have varying infestation rates and contain rare right-tail events (also called overdispersion). We show that greater overdispersion leads to more pronounced diminishing returns, with consequences on the optimal allocation of sampling effort. We leverage these two insights to develop a simple and efficient border inspection regime that can significantly reduce propagule pressure compared to current standards. Our analysis revealed that consignment size is a key driver of biosecurity risk and that sampling proportional to the square root of consignment size is near optimal. In testing, our framework reduced propagule pressure by 31 to 38% compared to current standards. We also identified opportunities to further improve inspection efficiency by considering additional pathway characteristics (i.e., overdispersion parameters, zero inflation, relative risk, sampling cost, detectability) and developed solutions for these more complex scenarios. We anticipate our result will mitigate biological invasion risk with significant implications for biodiversity conservation, food security, and economies worldwide.

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来源期刊
Risk Analysis
Risk Analysis 数学-数学跨学科应用
CiteScore
7.50
自引率
10.50%
发文量
183
审稿时长
4.2 months
期刊介绍: Published on behalf of the Society for Risk Analysis, Risk Analysis is ranked among the top 10 journals in the ISI Journal Citation Reports under the social sciences, mathematical methods category, and provides a focal point for new developments in the field of risk analysis. This international peer-reviewed journal is committed to publishing critical empirical research and commentaries dealing with risk issues. The topics covered include: • Human health and safety risks • Microbial risks • Engineering • Mathematical modeling • Risk characterization • Risk communication • Risk management and decision-making • Risk perception, acceptability, and ethics • Laws and regulatory policy • Ecological risks.
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