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本文引用的文献

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Accuracy and reproducibility of a four-hour method for anaerobe identification.一种用于厌氧菌鉴定的四小时方法的准确性和可重复性。
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Changes in prevalence and susceptibility of obligate anaerobes in clinical veterinary practice.临床兽医实践中专性厌氧菌的流行率和易感性变化。
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Comparison of PRAS II, RapID ANA, and API 20A systems for identification of anaerobic bacteria.用于鉴定厌氧菌的PRAS II、RapID ANA和API 20A系统的比较
J Clin Microbiol. 1985 Jan;21(1):122-6. doi: 10.1128/jcm.21.1.122-126.1985.
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Identification of some anaerobic bacteria in nonspecific anaerobic infections in animals.动物非特异性厌氧感染中某些厌氧菌的鉴定
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Isolation and identification of anaerobes in the veterinary diagnostic laboratory.
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用于鉴定兽医源厌氧菌的RapID-ANA系统评估

Evaluation of the RapID-ANA system for identification of anaerobic bacteria of veterinary origin.

作者信息

Adney W S, Jones R L

出版信息

J Clin Microbiol. 1985 Dec;22(6):980-3. doi: 10.1128/jcm.22.6.980-983.1985.

DOI:10.1128/jcm.22.6.980-983.1985
PMID:3905854
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC271863/
Abstract

This study evaluated the ability of the RapID-ANA system (Innovative Diagnostic Systems, Inc., Atlanta, Ga.) to accurately identify a spectrum of freshly isolated veterinary anaerobes. A total of 183 isolates were tested and included 7 Actinomyces spp., 53 Bacteroides spp., 32 Clostridium spp., 2 Eubacterium spp., 65 Fusobacterium spp., 1 Peptococcus spp., 22 Peptostreptococcus spp., and 1 Propionibacterium spp. All isolates were initially identified by conventional biochemical testing and gas-liquid chromatography of short-chain fatty acid metabolites. Additional tests were performed as required by the RapID-ANA system. Of these isolates, 81.4% were correctly identified to the genus level, including 59.6% to the species level, 14.2% were incorrectly identified at the genus level, and 4.4% were not identified. Initially, 20.2% of the strains were not identified because the microcodes were not in the code book. The majority of the incorrect identifications were caused by the misidentification of Fusobacterium spp. as Bacteroides spp. Errors also occurred when veterinary anaerobes not included in the data base were assigned an identification from the existing data base. The RapID-ANA system appears to be a promising new method for rapid identification of veterinary anaerobes; however, further evaluation with an extended data base is needed before the system can accurately identify all clinically significant anaerobes.

摘要

本研究评估了RapID-ANA系统(创新诊断系统公司,佐治亚州亚特兰大)准确鉴定一系列新分离的兽医厌氧菌的能力。共测试了183株分离菌,包括7株放线菌属、53株拟杆菌属、32株梭菌属、2株真杆菌属、65株梭杆菌属、1株消化球菌属、22株消化链球菌属和1株丙酸杆菌属。所有分离菌最初均通过常规生化检测和短链脂肪酸代谢产物的气液色谱法进行鉴定。根据RapID-ANA系统的要求进行了额外的检测。在这些分离菌中,81.4%被正确鉴定到属水平,其中59.6%被鉴定到种水平,14.2%在属水平被错误鉴定,4.4%未被鉴定。最初,20.2%的菌株未被鉴定是因为微编码不在编码手册中。大多数错误鉴定是由于梭杆菌属被误鉴定为拟杆菌属。当数据库中未包含的兽医厌氧菌被从现有数据库中指定一个鉴定结果时,也会出现错误。RapID-ANA系统似乎是一种有前景的快速鉴定兽医厌氧菌的新方法;然而,在该系统能够准确鉴定所有具有临床意义的厌氧菌之前,需要使用扩展数据库进行进一步评估。