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Biosurveillance enterprise for operational awareness a genomic-based approach for tracking pathogen virulence

机译:生物监视企业可提高运营意识这是一种基于基因组的跟踪病原体毒力的方法

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摘要

To protect our civilians and warfighters against both known and unknown pathogens, biodefense stakeholders must be able to foresee possible technological trends that could affect their threat risk assessment. However, significant flaws in how we prioritize our countermeasure-needs continue to limit their development. As recombinant biotechnology becomes increasingly simplified and inexpensive, small groups, and even individuals, can now achieve the design, synthesis, and production of pathogenic organisms for offensive purposes. Under these daunting circumstances, a reliable biosurveillance approach that supports a diversity of users could better provide early warnings about the emergence of new pathogens (both natural and manmade), reverse engineer pathogens carrying traits to avoid available countermeasures, and suggest the most appropriate detection, prophylactic, and therapeutic solutions. While impressive in data mining capabilities, real-time content analysis of social media data misses much of the complexity in the factual reality. Quality issues within freeform user-provided hashtags and biased referencing can significantly undermine our confidence in the information obtained to make critical decisions about the natural vs. intentional emergence of a pathogen. At the same time, errors in pathogen genomic records, the narrow scope of most databases, and the lack of standards and interoperability across different detection and diagnostic devices, continue to restrict the multidimensional biothreat assessment. The fragmentation of our biosurveillance efforts into different approaches has stultified attempts to implement any new foundational enterprise that is more reliable, more realistic and that avoids the scenario of the warning that comes too late. This discussion focus on the development of genomic-based decentralized medical intelligence and laboratory system to track emerging and novel microbial health threats in both military and civilian settings and the use of virulence factors for risk assessment. Examples of the use of motif fingerprints for pathogen discrimination are provided.
机译:为了保护我们的平民和战士免受已知和未知病原体的侵害,生物防御利益相关者必须能够预见可能影响其威胁风险评估的技术趋势。但是,我们在优先考虑对策需求方面存在重大缺陷,这继续限制了它们的发展。随着重组生物技术变得越来越简单和廉价,小团体甚至个人现在可以实现用于进攻目的的病原生物的设计,合成和生产。在这些艰巨的情况下,支持多种用户的可靠的生物监视方法可以更好地提供有关新病原体(天然和人为)的出现的早期预警,对具有特征的病原体进行逆向工程以避免可能的对策,并建议最合适的检测方法,预防和治疗解决方案。尽管数据挖掘功能令人印象深刻,但对社交媒体数据的实时内容分析却忽略了现实中的许多复杂性。用户提供的自由形式标签中的质量问题和偏向引用会严重破坏我们对获取的信息的信心,这些信息对于对病原体的自然出现或故意出现的情况做出关键决策。同时,病原体基因组记录中的错误,大多数数据库的范围狭窄以及不同检测和诊断设备之间缺乏标准和互操作性,继续限制了多维生物威胁评估。我们的生物监视工作分散为不同的方法,已经使尝试实施任何新的基础企业的尝试变得更加严格,这些基础企业更可靠,更现实,并且避免了警告来得太迟的情况。讨论的重点是基于基因组的分散医疗智能和实验室系统的开发,以跟踪军事和民用环境中新出现的和新型的微生物健康威胁,以及使用毒力因子进行风险评估。提供了使用图案指纹进行病原体识别的示例。

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