首页> 美国卫生研究院文献>Journal of Clinical Microbiology >Effect of agitation and terminal subcultures on yield and speed of detection of the Oxoid Signal blood culture system versus the BACTEC radiometric system.
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Effect of agitation and terminal subcultures on yield and speed of detection of the Oxoid Signal blood culture system versus the BACTEC radiometric system.

机译:与BACTEC辐射系统相比搅拌和终末亚培养对Oxoid Signal血液培养系统的产量和检测速度的影响。

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摘要

In an initial evaluation, we found the Oxoid Signal blood culture system inferior to the BACTEC radiometric system for detection of some microorganisms causing septicemia (M. P. Weinstein, S. Mirrett, and L. B. Reller, J. Clin. Microbiol. 26:962-964, 1988). To determine whether modified processing of the Oxoid Signal blood culture system could improve its yield and speed of detecting positive cultures relative to the BACTEC radiometric system, we agitated all Oxoid bottles during the first 24 to 48 h of incubation and performed aerobic and anaerobic subcultures of all Oxoid bottles negative after 7 days of incubation. These modifications improved the overall performance of the Oxoid system, particularly with regard to the yield of streptococci, members of the family Enterobacteriaceae, and Haemophilus, Neisseria, and Acinetobacter spp. The speed of detecting positive cultures also was improved, especially within the first 24 h of incubation. However, the BACTEC system still detected more positive cultures (P less than 0.005), especially of obligate aerobes such as Pseudomonas aeruginosa (P less than 0.05) and yeasts (P less than 0.005). The BACTEC system also detected positive cultures earlier than the Oxoid system (e.g., at 24 h of incubation, 70.5% of BACTEC positive cultures detected versus 62.1% of Oxoid positive cultures detected). Further modifications of the Oxoid system which might include a revised medium, additional processing modifications, altered headspace atmosphere, or a complementary second broth medium should be considered, since the system is attractive in concept and is easy to use in the clinical laboratory.
机译:在初步评估中,我们发现Oxoid Signal血液培养系统不如BACTEC辐射系统可检测到一些导致败血病的微生物(MP Weinstein,S. Mirrett和LB Reller,J. Clin。Microbiol。26:962-964, 1988)。为了确定Oxoid Signal血液培养系统的改良处理相对于BACTEC放射系统是否能提高其产量和检测阳性培养物的速度,我们在孵育的最初24至48小时内搅拌了所有Oxoid瓶,并进行了有氧和厌氧的亚培养孵育7天后,所有Oxoid瓶均为阴性。这些修饰改善了Oxoid系统的整体性能,特别是在链球菌,肠杆菌科成员以及嗜血杆菌,奈瑟氏菌和不动杆菌属的链球菌产量方面。检测阳性培养物的速度也有所提高,尤其是在孵育的前24小时内。但是,BACTEC系统仍检测到更多阳性培养物(P小于0.005),尤其是专性需氧菌,如铜绿假单胞菌(P小于0.05)和酵母菌(P小于0.005)。 BACTEC系统还比Oxoid系统更早检测到阳性培养物(例如,在孵育24小时后,检测到70.5%的BACTEC阳性培养物与62.1%的Oxoid阳性培养物相比)。应该考虑对Oxoid系统进行进一步的修改,其中可能包括修改的培养基,其他处理修改,改变的顶空气氛或补充的第二肉汤培养基,因为该系统在概念上很有吸引力,并且易于在临床实验室中使用。

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