Suppr超能文献

组合效应减轻了蚊虫防控干预对蚊虫种群和疟疾传播的影响。

The portfolio effect cushions mosquito populations and malaria transmission against vector control interventions.

机构信息

Environmental Health and Ecological Sciences Department, Ifakara Health Institute, Ifakara, United Republic of Tanzania.

Vector Biology Department, Liverpool School of Tropical Medicine, Pembroke Place, Liverpool, L3 5QA, UK.

出版信息

Malar J. 2018 Aug 10;17(1):291. doi: 10.1186/s12936-018-2441-z.

Abstract

BACKGROUND

Portfolio effects were first described as a basis for mitigating against financial risk by diversifying investments. Distributing investment across several different assets can stabilize returns and reduce risks by statistical averaging of individual asset dynamics that often correlate weakly or negatively with each other. The same simple probability theory is equally applicable to complex ecosystems, in which biological and environmental diversity stabilizes ecosystems against natural and human-mediated perturbations. Given the fundamental limitations to how well the full complexity of ecosystem dynamics can be understood or anticipated, the portfolio effect concept provides a simple framework for more critical data interpretation and pro-active conservation management. Applied to conservation ecology purposes, the portfolio effect concept informs management strategies emphasizing identification and maintenance of key ecological processes that generate complexity, diversity and resilience against inevitable, often unpredictable perturbations.

IMPLICATIONS

Applied to the reciprocal goal of eliminating the least valued elements of global biodiversity, specifically lethal malaria parasites and their vector mosquitoes, simply understanding the portfolio effect concept informs more cautious interpretation of surveillance data and simulation model predictions. Malaria transmission mediated by guilds of multiple vectors in complex landscapes, with highly variable climatic and meteorological conditions, as well as changing patterns of land use and other human behaviours, will systematically tend to be more resilient to attack with vector control than it appears based on even the highest quality surveillance data or predictive models.

CONCLUSION

Malaria vector control programmes may need to be more ambitious, interpret their short-to-medium term assessments of intervention impact more cautiously, and manage stakeholder expectations more conservatively than has often been the case thus far.

摘要

背景

投资组合效应最初被描述为通过分散投资来降低金融风险的一种基础。通过将投资分布在几种不同的资产上,可以通过对单个资产动态的统计平均来稳定回报并降低风险,这些动态通常彼此之间相关性较弱或呈负相关。同样的简单概率论同样适用于复杂的生态系统,其中生物和环境多样性可以稳定生态系统,使其免受自然和人为干扰的影响。鉴于对生态系统动态的全部复杂性的理解或预测的基本限制,投资组合效应概念为更关键的数据解释和积极的保护管理提供了一个简单的框架。将该概念应用于保护生态学的目的,投资组合效应可以指导管理策略,强调识别和维护关键的生态过程,这些过程可以产生复杂性、多样性和对不可避免的、通常不可预测的干扰的恢复力。

影响

将该概念应用于消除全球生物多样性中最不受重视的元素的相反目标,即致命的疟原虫及其媒介蚊子,仅仅理解投资组合效应概念就可以更谨慎地解释监测数据和模拟模型预测。在复杂的景观中,由多个媒介组成的群体传播疟疾,其气候和气象条件高度变化,以及土地利用和其他人类行为模式的变化,与仅基于最高质量的监测数据或预测模型相比,系统上更能抵御媒介控制的攻击。

结论

疟疾媒介控制计划可能需要更加雄心勃勃,更谨慎地评估干预措施的短期和中期影响,并更保守地管理利益相关者的期望,这与迄今为止的情况不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6fc/6086012/c8f60ad751bf/12936_2018_2441_Fig1_HTML.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验