Suppr超能文献

数据挖掘家禽加工生物图谱中病原体和指示生物的数量,用于食品安全管理决策。

Data-Mining Poultry Processing Bio-Mapping Counts of Pathogens and Indicator Organisms for Food Safety Management Decision Making.

作者信息

Vargas David A, De Villena Juan F, Larios Valeria, Bueno López Rossy, Chávez-Velado Daniela R, Casas Diego E, Jiménez Reagan L, Blandon Sabrina E, Sanchez-Plata Marcos X

机构信息

International Center for Food Industry Excellence, Department of Animal and Food Sciences, Texas Tech University, Lubbock, TX 79409, USA.

出版信息

Foods. 2023 Feb 20;12(4):898. doi: 10.3390/foods12040898.

Abstract

Bio-mapping studies play an important role, as the data collected can be managed and analyzed in multiple ways to look at process trends, find explanations about the effect of process changes, activate a root cause analysis for events, and even compile performance data to demonstrate to inspection authorities or auditors the effect of certain decisions made on a daily basis and their effects over time in commercial settings not only from the food safety perspective but also from the production side. This study presents an alternative analysis of bio-mapping data collected throughout several months in a commercial poultry processing operation as described in the article "Bio-Mapping Indicators and Pathogen Loads in a Commercial Broiler Processing Facility Operating with High and Low Antimicrobial Interventions". The conducted analysis identifies the processing shift effect on microbial loads, attempts to find correlation between microbial indicators data and pathogens loads, and identifies novel visualization approaches and conducts distribution analysis for microbial indicators and pathogens in a commercial poultry processing facility. From the data analyzed, a greater number of locations were statistically different between shifts under reduced levels of chemical interventions with higher means at the second shift for both indicators and pathogens levels. Minimal to negligible correlation was found when comparing aerobic counts and Enterobacteriaceae counts with levels, with significant variability between sampling locations. Distribution analysis and visualization as a bio-map of the process resulted in a clear bimodality in reduced chemical conditions for multiple locations mostly explained by shift effect. The development and use of bio-mapping data, including proper data visualization, improves the tools needed for ongoing decision making in food safety systems.

摘要

生物图谱研究发挥着重要作用,因为收集到的数据可以通过多种方式进行管理和分析,以观察过程趋势、找出过程变化影响的解释、启动对事件的根本原因分析,甚至汇编性能数据,向检查机构或审计人员展示日常做出的某些决策在商业环境中的效果及其随时间的影响,不仅从食品安全角度,而且从生产方面来看。本研究对在商业家禽加工操作中连续数月收集的生物图谱数据进行了另一种分析,如文章《在高抗菌干预和低抗菌干预下运行的商业肉鸡加工设施中的生物图谱指标和病原体负荷》所述。所进行的分析确定了加工班次对微生物负荷的影响,试图找出微生物指标数据与病原体负荷之间的相关性,并确定新颖的可视化方法,并对商业家禽加工设施中的微生物指标和病原体进行分布分析。从分析的数据来看,在化学干预水平降低的情况下,两个班次之间在统计学上有更多位置存在差异,两个指标和病原体水平在第二个班次的平均值更高。在将需氧菌计数和肠杆菌科计数与病原体水平进行比较时,发现相关性极小或可忽略不计,且采样位置之间存在显著差异。将分布分析和可视化作为过程的生物图谱,在化学成分降低的条件下,多个位置出现了明显的双峰分布,这主要由班次效应解释。生物图谱数据的开发和使用,包括适当的数据可视化,改进了食品安全系统中持续决策所需的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/59b6/9956266/d4835f86f0d1/foods-12-00898-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验