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首页> 外文期刊>Transfusion: The Journal of the American Association of Blood Banks >A noninvasive near infrared system for detection of platelet components contaminated with bacteria.
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A noninvasive near infrared system for detection of platelet components contaminated with bacteria.

机译:一种非侵入式近红外系统,用于检测细菌污染的血小板组分。

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BACKGROUND: Platelet (PLT) transfusion-associated bacterial sepsis has remained a substantial patient risk, primarily due to lacking effective and point-of-issue measures to detect bacterial contamination. This study describes near infrared (NIR) spectroscopy to examine inoculated PLTs without sampling within a few seconds. STUDY DESIGN AND METHODS: This study evaluated apheresis PLTs inoculated with low concentrations of Bacillus cereus and Staphylococcus epidermidis, comparing with sterile bags. Short-wavelength NIR spectra over the range from 700 to 1100 nm in the transmittance mode were obtained using research (NIRS6500, Foss NIRSystems) and portable (NIRGun, Shizuoka Shibuya Seiki) instruments at 6-hour intervals from 0 to 72 hours after inoculation (HAI). RESULTS: The sensitivity of the NIRS6500 was 100% (43/43) and 98% (50/51) after incubating PLTs inoculated with B. cereus for 42 HAI or more and with S. epidermidis for 54 HAI or more, respectively. Difference spectra calculated by subtracting the NIR spectra of stored PLTs with that of the same PLTs measured at 0 HAI improved the discrimination results compared with conventional second derivative spectra. CONCLUSION: The NIRS6500 system can provide a PLT monitoring system based on difference spectra. The chemical components of PLTs that were influenced by bacterial metabolism seemed to play an important role in the calibration structure. Further studies should examine samples spiked with various species of prevalent bacteria.
机译:背景:血小板(PLT)复杂相关的细菌败血症仍然存在大量患者风险,主要是由于缺乏有效和发布点措施来检测细菌污染。本研究描述了近红外(NIR)光谱,以检查接种的PLT,而不会在几秒钟内取样。研究设计和方法:本研究评估了用低浓度的芽孢杆菌和葡萄球菌表皮的植物组织PLTS,与无菌袋相比。在接种后的0到72小时的6小时间隔以6小时间隔(海)。结果:培育PLTS与B.Cerentus 42 Hai或更多以及54个Hai或更多的S.Peidermidis的PLTS,NIRS6500的敏感性为100%(43/43)和98%(50/51)。通过在0 HAI测量的相同PLTS中减去存储的PLTS的NIR光谱来计算的差异光谱改善了与传统的第二衍生光谱相比的辨别结果。结论:NIRS6500系统可以提供基于差异光谱的PLT监测系统。受细菌代谢影响的PLT的化学成分似乎在校准结构中发挥着重要作用。进一步的研究应该检查用各种普遍的细菌掺入的样品。

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