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Validation of Additional Approaches and Applications for Using the Continuous and Manual Sampling Devices for Raw Beef Trim

机译:验证用于使用用于生牛肉装饰的连续和手动采样装置的额外方法和应用

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摘要

In this work, the goal was to determine the efficacy of MicroTally-based sampling in scenarios commonly encountered in the commercial beef processing industry, but outside of the parameters evaluated during the initial proof-of-concept work. The data were derived from 1,650 matched samples collected from 540 individual combo bins at six commercial beef processing plants, comparing MicroTally-based sampling (continuous and manual sampling devices [CSD and MSD]) to N60 Excision and/ or N60 Plus methods. Mounting a 61-cm CSD cartridge to a 30-cm-wide conveyor provided sampling that is equivalent to N60 Excision and N60 Plus methods. Mounting a CSD to a chute instead of a conveyor was equivalent to the N60 Plus sampling method. The CSD was shown to be effective for sampling when used in conjunction with a "swinging arm trim diverter" and receiving product in batch mode as opposed to continuous flow. MSD sampling of oval combo bins with trim surface area (≈0.93 m~2[ ≈1,439 in~2]) less than 1 m~2 (1,600 in~2) was shown to be equivalent to the N60 Plus sample collection method. Peracetic acid applied at the end of the trim conveyor did not negatively impact pathogen index target detection of the CSD even if the samples were shipped overnight before analysis. Pathogen index targets were demonstrated to be useful tools for validating methods designed to measure pathogen prevalence. The data presented herein support equivalency criteria of within 0.5 log CFU per sample for indicator organism counts. These data collectively support various alternative applications of MicroTally-based trim sampling and the application and interpretation of alternative methods for pathogen detection.
机译:在这项工作中,目标是确定在商业牛肉加工行业常见的情景中的基于语音基础采样的功效,但在初始概念验证工作中评估的参数之外。该数据源自从六个商业牛肉加工厂的540个单独组合箱收集的1,650个匹配样本,比较了基于显微型采样(连续和手动采样装置[CSD和MSD])到N60切除和/或N60加法。将61厘米CSD墨盒安装到30厘米宽的输送机,提供了相当于N60 Excision和N60 Plus方法的采样。将CSD安装到滑槽而不是传送带等同于N60加采样方法。当与“摆动臂修剪转向器”结合使用时,CSD显示用于采样,与“摆动臂修剪分解器”和以批量模式接收产品,而不是连续流动。具有修剪表面积的椭圆形组合箱的MSD采样(≈0.93m〜2≈1,439英寸×1,439)小于1 m〜2(1,600英寸〜2),相当于N60加样品采集方法。即使在分析前过夜,样品过夜,也没有对CSD的末端施加的过乙酸不会产生负面影响的病原体指数靶检测。对病原体指数目标被证明是用于验证设计以测量病原体患病率的方法的有用工具。本文呈现的数据支持每种样品在0.5对数CFU内的等效标准进行指示器生物计数。这些数据共同支持基于微量基因的修剪抽样的各种替代应用以及对病原体检测的替代方法的应用和解释。

著录项

  • 来源
    《Journal of food protection》 |2021年第4期|536-544|共9页
  • 作者单位

    U.S. Department of Agriculture Agricultural Research Service Roman L. Hruska U.S. Meat Animal Research Center P.O. Box 166 Clay Center Nebraska 68933 USA;

    U.S. Department of Agriculture Agricultural Research Service Roman L. Hruska U.S. Meat Animal Research Center P.O. Box 166 Clay Center Nebraska 68933 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Beef trim; Continuous sampling device; Manual sampling device; MicroTally; N60; Pathogen;

    机译:牛肉装饰;连续采样装置;手动采样装置;显微地;n60;病原;

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