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Crowd monitoring in dairy cattle-real-time VOC profiling by direct mass spectrometry

机译:人群监测在乳制品牛实时VOC分析通过直接质谱

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摘要

Volatile organic compounds (VOCs) emitted from breath, faeces or skin may reflect physiological and pathological processes in vivo. Our setup employs real-time proton-transfer-reaction time-of-flight mass spectrometry (PTR-TOF-MS) to explore VOC emissions of dairy cows in stable air under field conditions. Within one herd of 596 cows, seven groups (8-117 cows per group) were assessed. Groups differed in milk yield and health status (two contained cows with paratuberculosis, a chronic intestinal infection). Each group arrived one after another in the area of air measurement in front of the milking parlour. A customised PTR-TOF-MS system with a 6mlong and heated transfer line, was used for measuring VOCs continuously for 7 h, 1.5 mabove the cows. Three consecutive time periods were investigated. Twenty-seven VOCs increased while the animals were gathering in the waiting area, and decreased when the animals entered the milking parlour. Linear correlations between the number of animals present and VOC concentrations were found for (C_4H_6)H~+ and (C_3H_6O)H~+. A relatively high concentration of acetone above the cows that had recently given birth to a calf might be related to increased fat turnover due to calving and different nutrition. Changes in VOC emissions were related to the presence of animals with paratuberculosis, to different average milk yields per group and to the time of the day (morning versus noon milking time).We found that VOC monitoring of stable air may provide additional immediate information on an animal’s metabolic or health status and foster novel applications in the field of breath research.
机译:呼吸,粪便或皮肤排出的挥发性有机化合物(VOC)可能反映体内生理和病理过程。我们的设置采用实时质子转移反应 - 飞行时间质谱(PTR-TOF-MS),在现场条件下探索稳定空气中奶牛的VOC排放。在一个596奶牛的一群人内,评估了七组(每组8-117母牛)。牛奶产量和健康状况的群体不同(两个含有副鸡血病的奶牛,慢性肠道感染)。每个小组在挤奶厅前面的空气测量领域陆续到另一个。具有6mlOgg和加热的转移线的定制PTR-TOF-MS系统,用于连续测量VOC 7小时,1.5米宝牛。调查了连续三个时间段。当动物进入挤奶厅时,动物在等候区收集时,27 VOC会增加。发现存在的动物数量和VOC浓度之间的线性相关性(C_4H_6)H〜+和(C_3H_6O)H〜+。在最近给予小牛的奶牛上方的丙酮中高于腺体相对较高的丙酮可能与由于产犊和不同的营养而增加的脂肪扭转。 VOC排放的变化与患有副植物的动物的存在有关,每组的不同平均乳率和一天中的时间(早上与中午挤奶时间)。我们发现稳定空气的VOC监测可以提供额外的直接信息动物的代谢或健康状况以及促进呼吸研究领域的新应用。

著录项

  • 来源
    《Journal of breath research》 |2019年第4期|共10页
  • 作者单位

    Department of Anaesthesiology and Intensive Care Medicine Rostock Medical Breath Research Analytics and Technologies (ROMBAT) University Medicine Rostock Schillingallee 35 18057 Rostock Germany;

    Institute of Molecular Pathogenesis at the ‘Friedrich-Loeffler-Institut’ Naumburger Str. 96A 07743 Jena Germany;

    Institute of Molecular Pathogenesis at the ‘Friedrich-Loeffler-Institut’ Naumburger Str. 96A 07743 Jena Germany;

    Institute of Molecular Pathogenesis at the ‘Friedrich-Loeffler-Institut’ Naumburger Str. 96A 07743 Jena Germany;

    Department of Anaesthesiology and Intensive Care Medicine Rostock Medical Breath Research Analytics and Technologies (ROMBAT) University Medicine Rostock Schillingallee 35 18057 Rostock Germany;

    Department of Anaesthesiology and Intensive Care Medicine Rostock Medical Breath Research Analytics and Technologies (ROMBAT) University Medicine Rostock Schillingallee 35 18057 Rostock Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 内科学;
  • 关键词

    crowd monitoring; animal; real-time; PTR-TOF; VOC profile; metabolic monitoring; infection;

    机译:人群监测;动物;实时;PTR-TOF;VOC型;代谢监测;感染;
  • 入库时间 2022-08-20 08:51:09

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