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Early Discrimination Of Microorganisms Involved In Ventilator Associated Pneumonia Using Qualitative Volatile Fingerprints

机译:使用定性挥发性指纹的呼吸机相关肺炎的早期判断呼吸机相关的微生物

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This study has examined the use of an electronic nose for the detection of volatile organic compounds produced by different microorganisms responsible for ventilator-associated pneumonia (VAP), an important disease among patients who require mechanical ventilation. Based on the analysis of the volatile organic compounds, electronic nose technology is being evaluated for the early detection and identification of many diseases. It has been shown that effective discrimination of two bacteria (Enterobacter cloacae and Klebsiella pneumoniae) and yeast (Candida albicans), could be obtained after 24 h and filamentous fungus (Aspergillus (umigatus) after 72h. Discrimination between blank samples and those with as initial concentration of 102 CFU m1-1 was shown with 24h incubation for bacteria and 48 h for fungi. Effective discrimination between all the species was achieved 72 h after incubation. Initial studies with mixtures of microorganisms involved in VAP suggest that complex interactions between species occur which influences the ability to differentiate dominant species using volatile production patterns. A nutrient agar base medium was found to be optimum for early discrimination between two microorganisms (Klebsiella pneumoniae and Candida albicans).
机译:本研究已研究了使用电子鼻的用于检测由负责呼吸机相关肺炎(VAP)不同微生物产生的挥发性有机化合物,谁需要机械通气患者中的重要疾病。基于挥发性有机化合物的分析,电子鼻技术正在评估为许多疾病的早期检测和鉴定。它已经显示,两种细菌(阴沟肠杆菌和肺炎克雷伯菌)和酵母(白色念珠菌)的有效鉴别,可以24小时和丝状真菌(曲霉属(umigatus)后72小时之后获得。歧视空白样品和那些与作为初始之间102 CFU M1-1的浓度示出为具有24小时温育细菌和真菌48小时。所有的物种之间的有效歧视孵育后获得72小时。最初的研究与参与VAP微生物的混合物表明,物种之间复杂的相互作用发生,这影响来区分使用挥发性生产模式优势种的能力。营养琼脂基础培养基被发现是最佳的为两种微生物(肺炎克雷伯氏菌,白色念珠菌)之间早期歧视。

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