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本文引用的文献

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Disease diagnostic coding to facilitate evidence-based medicine: current and future perspectives.疾病诊断编码促进循证医学:现状与未来展望。
J Vet Diagn Invest. 2021 May;33(3):419-427. doi: 10.1177/1040638721999373. Epub 2021 Mar 10.
2
Prediction of seasonal patterns of porcine reproductive and respiratory syndrome virus RNA detection in the U.S. swine industry.美国养猪业中猪繁殖与呼吸综合征病毒RNA检测季节性模式的预测。
J Vet Diagn Invest. 2020 May;32(3):394-400. doi: 10.1177/1040638720912406. Epub 2020 Apr 10.
3
Macroepidemiological aspects of porcine reproductive and respiratory syndrome virus detection by major United States veterinary diagnostic laboratories over time, age group, and specimen.美国主要兽医诊断实验室随时间推移、年龄组和样本对猪繁殖与呼吸综合征病毒的宏观流行病学检测
PLoS One. 2019 Oct 16;14(10):e0223544. doi: 10.1371/journal.pone.0223544. eCollection 2019.
4
Logical Observation Identifiers Names and Codes for Laboratorians.逻辑观察标识符命名与检验规范
Arch Pathol Lab Med. 2020 Feb;144(2):229-239. doi: 10.5858/arpa.2018-0477-RA. Epub 2019 Jun 20.
5
Decline of transmissible gastroenteritis virus and its complex evolutionary relationship with porcine respiratory coronavirus in the United States.美国传染性胃肠炎病毒的衰减及其与猪呼吸冠状病毒的复杂进化关系。
Sci Rep. 2019 Mar 8;9(1):3953. doi: 10.1038/s41598-019-40564-z.
6
Development and validation of a scoring system to assess the relative vulnerability of swine breeding herds to the introduction of PRRS virus.一种评估猪繁殖猪群引入猪繁殖与呼吸综合征病毒相对易感性的评分系统的开发与验证。
Prev Vet Med. 2018 Nov 15;160:116-122. doi: 10.1016/j.prevetmed.2018.10.004. Epub 2018 Oct 10.
7
Swine enteric coronavirus disease: A review of 4 years with porcine epidemic diarrhoea virus and porcine deltacoronavirus in the United States and Canada.猪肠道冠状病毒病:美国和加拿大 4 年来猪流行性腹泻病毒和猪德尔塔冠状病毒的综述。
Transbound Emerg Dis. 2018 Jun;65(3):660-675. doi: 10.1111/tbed.12823. Epub 2018 Feb 2.
8
Porcine epidemic diarrhoea: new insights into an old disease.猪流行性腹泻:对一种古老疾病的新见解。
Porcine Health Manag. 2015 Sep 29;1:12. doi: 10.1186/s40813-015-0007-9. eCollection 2015.
9
Porcine epidemic diarrhea virus (PEDV) detection and antibody response in commercial growing pigs.商品育肥猪中猪流行性腹泻病毒(PEDV)的检测及抗体反应
BMC Vet Res. 2016 Jun 10;12:99. doi: 10.1186/s12917-016-0725-5.
10
Porcine deltacoronavirus: Overview of infection dynamics, diagnostic methods, prevalence and genetic evolution.猪德尔塔冠状病毒:感染动态、诊断方法、流行情况及基因进化概述
Virus Res. 2016 Dec 2;226:71-84. doi: 10.1016/j.virusres.2016.05.028. Epub 2016 Jun 4.

数据标准化在诊断实验室内部和之间的实施和应用:肠冠状病毒的整合和监测。

Data standardization implementation and applications within and among diagnostic laboratories: integrating and monitoring enteric coronaviruses.

机构信息

Veterinary Diagnostic and Production Animal Medicine, Iowa State University, Ames, IA.

Veterinary Population Medicine, University of Minnesota, Saint Paul, MN.

出版信息

J Vet Diagn Invest. 2021 May;33(3):457-468. doi: 10.1177/10406387211002163. Epub 2021 Mar 19.

DOI:10.1177/10406387211002163
PMID:33739188
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8120076/
Abstract

Every day, thousands of samples from diverse populations of animals are submitted to veterinary diagnostic laboratories (VDLs) for testing. Each VDL has its own laboratory information management system (LIMS), with processes and procedures to capture submission information, perform laboratory tests, define the boundaries of test results (i.e., positive or negative), and report results, in addition to internal business and accounting applications. Enormous quantities of data are accumulated and stored within VDL LIMSs. There is a need for platforms that allow VDLs to exchange and share portions of laboratory data using standardized, reliable, and sustainable information technology processes. Here we report concepts and applications for standardization and aggregation of data from swine submissions to multiple VDLs to detect and monitor porcine enteric coronaviruses by RT-PCR. Oral fluids, feces, and fecal swabs were the specimens submitted most frequently for enteric coronavirus testing. Statistical algorithms were used successfully to scan and monitor the overall and state-specific percentage of positive submissions. Major findings revealed a consistently recurrent seasonal pattern, with the highest percentage of positive submissions detected during December-February for porcine epidemic diarrhea virus, porcine deltacoronavirus, and transmissible gastroenteritis virus (TGEV). After 2014, very few submissions tested positive for TGEV. Monitoring VDL data proactively has the potential to signal and alert stakeholders early of significant changes from expected detection. We demonstrate the importance of, and applications for, data organized and aggregated by using LOINC and SNOMED CTs, as well as the use of customized messaging to allow inter-VDL exchange of information.

摘要

每天,来自不同动物群体的数千个样本被提交给兽医诊断实验室(VDL)进行检测。每个 VDL 都有自己的实验室信息管理系统(LIMS),具有捕获提交信息、进行实验室测试、定义测试结果边界(即阳性或阴性)以及报告结果的流程和程序,此外还有内部业务和会计应用程序。大量数据在 VDL LIMS 中积累和存储。需要有平台允许 VDL 使用标准化、可靠和可持续的信息技术流程来交换和共享部分实验室数据。在这里,我们报告了从多个 VDL 中对猪提交物进行标准化和聚合数据的概念和应用,以通过 RT-PCR 检测和监测猪肠冠状病毒。口腔液、粪便和粪便拭子是最常提交用于肠冠状病毒检测的样本。成功使用统计算法扫描和监测整体和特定州的阳性提交百分比。主要发现揭示了一致的复发性季节性模式,在 12 月至 2 月期间,猪流行性腹泻病毒、猪德尔塔冠状病毒和传染性胃肠炎病毒(TGEV)的阳性提交百分比最高。2014 年后,很少有 TGEV 检测呈阳性。主动监测 VDL 数据有可能提前向利益相关者发出信号和警报,表明检测到的情况与预期有重大变化。我们展示了使用 LOINC 和 SNOMED CT 组织和聚合数据的重要性和应用,以及使用定制消息传递来允许 VDL 之间的信息交换。