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BD Phoenix自动化微生物系统SMIC/ID检测板用于链球菌属细菌鉴定及药敏试验的评估

Evaluation of the BD Phoenix Automated Microbiology System SMIC/ID panel for identification and antimicrobial susceptibility testing of Streptococcus spp.

作者信息

Hirakata Yoichi, Matsuda Junichi, Nakano Michiko, Hayashi Tomomi, Tozaka Shusaku, Takezawa Toshiyuki, Takahashi Hiroshi, Higashiyama Yasuhito, Miyazaki Yoshitsugu, Kamihira Shimeru, Kohno Shigeru

机构信息

Department of Laboratory Medicine, Nagasaki University School of Medicine and Dentistry, Japan.

出版信息

Diagn Microbiol Infect Dis. 2005 Nov;53(3):169-73. doi: 10.1016/j.diagmicrobio.2005.06.003. Epub 2005 Oct 21.

Abstract

The BD Phoenix Automated Microbiology System SMIC/ID panel was evaluated for identification and antimicrobial susceptibility testing (AST) of various streptococci. A group of 97 consecutive clinical isolates of Streptococcus pneumoniae, 23 Streptococcus pyogenes, 24 Streptococcus agalactiae, and 34 viridans streptococci were collected and comparisons made with routine manual methods used in the clinical microbiology laboratory. Overall, in 162 (91%) of 178 isolates, Phoenix identification results demonstrated agreement. For AST results for the 162 isolates that demonstrated identification concordance, the overall essential agreement rate was 98.5%; the category agreement was 94.9%; and the very major error, major error, and minor error rates were 0%, 0.15%, and 5.8%, respectively. Although relatively high minor error rates were observed with S. pneumoniae and beta-lactams, 79.2% of the 77 minor errors were the result of a single log(2) dilution difference. The Phoenix SMIC/ID panel performed favorably and demonstrated the advantages of automation and simple methodology.

摘要

对BD Phoenix自动微生物系统SMIC/ID鉴定板进行了评估,以用于各种链球菌的鉴定和抗菌药物敏感性试验(AST)。收集了一组连续的97株肺炎链球菌、23株化脓性链球菌、24株无乳链球菌和34株草绿色链球菌临床分离株,并与临床微生物实验室使用的常规手工方法进行比较。总体而言,在178株分离株中的162株(91%)中,Phoenix鉴定结果显示一致。对于显示鉴定一致性的162株分离株的AST结果,总体基本一致率为98.5%;类别一致率为94.9%;非常重大错误、重大错误和微小错误率分别为0%、0.15%和5.8%。尽管在肺炎链球菌和β-内酰胺类药物检测中观察到相对较高的微小错误率,但77个微小错误中有79.2%是由于单一log(2)稀释差异导致的。Phoenix SMIC/ID鉴定板表现良好,展示了自动化和方法简单的优势。

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