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首页> 外文期刊>Journal of breath research >Online monitoring of carbon dioxide and oxygen in exhaled mouse breath via substrate-integrated hollow waveguide Fourier-transform infrared-luminescence spectroscopy
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Online monitoring of carbon dioxide and oxygen in exhaled mouse breath via substrate-integrated hollow waveguide Fourier-transform infrared-luminescence spectroscopy

机译:通过基板 - 集成空心波导傅里叶 - 变换红外发光光谱在线监测呼出小鼠呼吸中的二氧化碳和氧气氧气

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摘要

Exhaled breath offersmonitoring bio markers, as well as diagnosing diseases and therapeutic interventions. In addition, vital functions may be non-invasively monitored online. Animal models are frequently used in research for determining novel therapeutic approaches and/or for investigating biological pathways. The exhaled carbon dioxide concentration, exhaled and inhaled oxygen concentration, and the subsequent respiratory quotient (RQ) offer insight into metabolic activity. One may adapt breath sampling systems and equipment designed for human applications to large animal studies. However, such adaptations are usually impossible for small animals due to their minuscule breath volume. Here, we present a system for the online monitoring of exhaled breath in a 'mouse intensive care unit' (MICU) based on a modified Fourier-transforminfrared spectrometer equipped with a substrate-integrated hollow waveguide gas cell, and a luminescence-based oxygen flow-through sensor integrated into the respiratory equipment of the MICU. Thereby, per-minute resolution of O_2 consumption and CO_2 production was obtained, and the 95% confidence range of the determined RQ was±0.04 or approximately±5% of the nominal value. Changes in the RQ value caused by intervention in either the metabolic or respiratory system may therefore reliably be detected.
机译:呼出的呼吸提供了语调生物标记,以及诊断疾病和治疗干预措施。此外,可以在线无侵入性监测重要功能。动物模型经常用于确定新的治疗方法和/或研究生物途径的研究。呼出的二氧化碳浓度,呼出和吸入的氧浓度,以及随后的呼吸型商(RQ)提供了对代谢活性的见解。可以将呼吸采样系统和设备用于大型动物研究。然而,由于它们的微小呼吸体积,这些适应通常不可能对小动物不可能。在这里,我们在基于配备有基材集成空心波导气体电池的改进的傅里叶变换射频光谱仪和基于发光的氧气流动的改进的傅里叶变换过度光谱仪,提出了一种用于在线监测的系统在线监测呼出气息 - 推出传感器集成到MICU的呼吸设备中。由此,获得O_2消耗量和CO_2生产的每分钟分辨率,并且确定的RQ的95%置信范围为±0.04或标称值的约±5%。因此,可以可靠地检测由代谢或呼吸系统的干预引起的RQ值的变化。

著录项

  • 来源
    《Journal of breath research》 |2018年第3期|共11页
  • 作者单位

    Institute of Analytical and Bioanalytical Chemistry Ulm University D-89081 Ulm Germany;

    Institute of Analytical and Bioanalytical Chemistry Ulm University D-89081 Ulm Germany;

    Institute of Analytical and Bioanalytical Chemistry Ulm University D-89081 Ulm Germany;

    Institute of Anesthesiologic Pathophysiology and Method Development Ulm University Medical Center Helmholtzstrasse 8/1 D-89081 Ulm Germany;

    Institute of Anesthesiologic Pathophysiology and Method Development Ulm University Medical Center Helmholtzstrasse 8/1 D-89081 Ulm Germany;

    Institute of Anesthesiologic Pathophysiology and Method Development Ulm University Medical Center Helmholtzstrasse 8/1 D-89081 Ulm Germany;

    Institute of Anesthesiologic Pathophysiology and Method Development Ulm University Medical Center Helmholtzstrasse 8/1 D-89081 Ulm Germany;

    Institute of Anesthesiologic Pathophysiology and Method Development Ulm University Medical Center Helmholtzstrasse 8/1 D-89081 Ulm Germany;

    Institute of Analytical and Bioanalytical Chemistry Ulm University D-89081 Ulm 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

    exhaled breath analysis; mouse; oxygen; carbon dioxide; FTIR; substrate-integrated hollow waveguide; infrared and luminescence online monitoring;

    机译:呼气呼气分析;小鼠;氧气;二氧化碳;FTIR;基板 - 集成空心波导;红外和发光在线监测;

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