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如何优化用于细菌计数的倾注平板法。

How to optimize the drop plate method for enumerating bacteria.

作者信息

Herigstad B, Hamilton M, Heersink J

机构信息

Department of Mathematical Sciences, P.O. Box 172400, Montana State University-Bozeman, Bozeman, MT 59717-2400, USA.

出版信息

J Microbiol Methods. 2001 Mar 1;44(2):121-9. doi: 10.1016/s0167-7012(00)00241-4.

Abstract

The drop plate (DP) method can be used to determine the number of viable suspended bacteria in a known beaker volume. The drop plate method has some advantages over the spread plate (SP) method. Less time and effort are required to dispense the drops onto an agar plate than to spread an equivalent total sample volume into the agar. By distributing the sample in drops, colony counting can be done faster and perhaps more accurately. Even though it has been present in the laboratory for many years, the drop plate method has not been standardized. Some technicians use 10-fold dilutions, others use twofold. Some technicians plate a total volume of 0.1 ml, others plate 0.2 ml. The optimal combination of such factors would be useful to know when performing the drop plate method. This investigation was conducted to determine (i) the standard deviation of the bacterial density estimate, (ii) the cost of performing the drop plate procedure, (iii) the optimal drop plate design, and (iv) the advantages of the drop plate method in comparison to the standard spread plate method. The optimal design is the combination of factor settings that achieves the smallest standard deviation for a fixed cost. Computer simulation techniques and regression analysis were used to express the standard deviation as a function of the beaker volume, dilution factor, and volume plated. The standard deviation expression is also applicable to the spread plate method.

摘要

滴板(DP)法可用于确定已知烧杯体积中活的悬浮细菌数量。滴板法相对于涂布平板(SP)法具有一些优势。将液滴滴加到琼脂平板上比将等量的总样品体积涂布到琼脂中所需的时间和精力更少。通过以液滴形式分配样品,可以更快且可能更准确地进行菌落计数。尽管滴板法在实验室中已存在多年,但尚未标准化。一些技术人员使用10倍稀释,另一些使用2倍稀释。一些技术人员涂布的总体积为0.1 ml,另一些为0.2 ml。在进行滴板法时,了解这些因素的最佳组合会很有用。进行这项研究是为了确定:(i)细菌密度估计值的标准差;(ii)执行滴板程序的成本;(iii)最佳滴板设计;以及(iv)与标准涂布平板法相比,滴板法的优势。最佳设计是在固定成本下实现最小标准差的因素设置组合。使用计算机模拟技术和回归分析将标准差表示为烧杯体积、稀释因子和涂布体积的函数。该标准差表达式也适用于涂布平板法。

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