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首页> 外文期刊>Journal of near infrared spectroscopy >Detection of animal by-products in bone ashes by near infrared spectroscopy coupled with microscopy
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Detection of animal by-products in bone ashes by near infrared spectroscopy coupled with microscopy

机译:近红外光谱与显微镜耦合的近红外光谱检测骨灰中的动物副产品

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摘要

Bovine spongiform encephalopathy is a mortal bovine disease. Epidemiologic studies have linked the disease to animal feed contaminated with infected protein. In Argentina, the feeding of bovines with components of animal origin is banned, except for fishmeal and bone ash. Nowadays, optical microscopy is used to analyze animal feed and its components. In this method, technical analytical expertise is very important. This is why the development of a methodology that produces results which can be rapidly and automatically compared is urgently needed. The specific infrared microscopy method presented in this work delivers qualitative results in terms of the presence or absence of animal particles by applying specific decision rules. The object of this work was to assess the methodology of near infrared microscopy for the qualitative determination of the presence of particles of animal origin in matrices of bone ash. The spectra were collected by an image microscope coupled to a Fourier transform infrared spectrometer operating in the reflection mode. Four mappings were done per sample, obtaining 1000 spectra per mapping. They were selected from an area on the slide of 50 particles in the axis X and 20 particles in the axis Y. Spectra were automatically collected at these points. In order to find the fragments of animal origin in the samples, a specific software program was developed. The program analyzed the spectra and evaluated the presence of bone fragments. From the validation results, it could be inferred that 4000 spectra should be observed in order to achieve a detection limit of 0.05?g bone fragments 100?g~(?1)bone ash. Selectivity, intermediate precision and repeatability were also analyzed with satisfactory results. Therefore, the validated method can be easily applied in routine analysis of bone ashes.
机译:牛海绵状脑病是致命的牛病。流行病学研究将疾病与受感染蛋白污染的动物饲料有关。在阿根廷,除了鱼粉和骨灰之外,禁止使用动物来源组分的牛群。如今,光学显微镜用于分析动物饲料及其组分。在这种方法中,技术分析专业知识非常重要。这就是为什么开发产生可以快速和自动比较结果的方法的方法是迫切需要的。通过应用具体决策规则,本作品中提出的特异性红外显微镜方法可提供动物颗粒的存在或不存在。这项工作的目的是评估近红外显微镜的方法,以定性测定骨灰基质中的动物源颗粒的存在。通过耦合到在反射模式下操作的傅里叶变换红外光谱仪的图像显微镜收集光谱。每个样品完成四个映射,获得每个映射1000个光谱。它们从轴X和20颗粒中的50颗粒的载玻片的区域中选择,在这些点处自动收集光谱。为了在样本中找到动物来源的碎片,开发了特定的软件程序。该程序分析了光谱并评估了骨片段的存在。从验证结果中,可以推断出4000个光谱,以达到0.05?G骨碎片100≤g〜(α1)骨灰的检出限。选择性,中间精度和可重复性也分析了令人满意的结果。因此,验证的方法可以容易地应用于骨灰的常规分析中。

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  • 作者单位

    National Service for Agrifood Health and Quality (SENASA) General Directorate of Laboratories and Technical Control (DILAB) Buenos Aires Argentina;

    National Service for Agrifood Health and Quality (SENASA) General Directorate of Laboratories and Technical Control (DILAB) Buenos Aires Argentina;

    National Service for Agrifood Health and Quality (SENASA) General Directorate of Laboratories and Technical Control (DILAB) Buenos Aires Argentina;

    National Service for Agrifood Health and Quality (SENASA) General Directorate of Laboratories and Technical Control (DILAB) Buenos Aires Argentina;

    National Service for Agrifood Health and Quality (SENASA) General Directorate of Laboratories and Technical Control (DILAB) Buenos Aires Argentina;

    SoftLab S.R.L. Buenos Aires Argentina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

    Bovine spongiform encephalopathy; ash analyzer software; bone fragment; ash; near infrared spectroscopy;

    机译:牛海绵状脑病;灰分分析仪软件;骨片;灰;近红外光谱;

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