Ways to reduce the labor intensiveness of applying the method of optical estimation of microbial cell concentration in suspension.

O A Simonov, Ekaterina Olegovna Simonova, V A Malchevskiy
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Abstract

The labor intensity (in hours) of the optical method of microbial cell counting in suspension compared to the method of microbial cell counting using a Goryaev chamber is evaluated. The relevance of assessing the production labor intensity of microbial cell counting methods in suspension is related to the need to use them in many studies. Often the commonly used methods are too labour-intensive, time-consuming, or require expensive equipment. A comparative experiment was carried out with our previously developed "Method for optical estimation of microbial cell concentration in suspension" (Priority certificate No. 2016141859 dated 25.10.2016) and the method of microbial cell counting using a Goryaev chamber. Production labor intensity of the measurements performed was calculated in hours according to the formula: Tp=Tt+Tob, where Tp is production labour input, Tt is technological labour input, Tob is maintenance labour input. Technological labour input of measurements with use of Goryaev's chamber made up 32,18 ± 0,95, whereas with optical method - 1,03±0,06 (reliability of differences at p<0,01) at amount of measurements n = 100. Labour input of service at optical method 0,24 ± 0,03, at application of method with use of Goryaev chamber 0,15±0,01 hours. Labour input of measurements of concentration of microbial cells in suspension at application of method of measurement with Goryaev chamber remains (p<0,01) higher than at an optical method of estimation, 32,33±0,96 and 1,27±0,05 hours accordingly. When using the optical method of concentration estimation in the suspension it is necessary to carry out not a small amount of necessary mathematical calculations, which in the future, probably, corrected by creating a special program for a personal computer. The labour input of results obtained by measuring by optical evaluation of the concentration of microbial cells in suspension is lower than that obtained by using a measurement method using a Goryaev chamber. Taking into consideration that its implementation does not require purchase of special equipment as in turbidimetry, its cost-effectiveness compared to existing ones is obvious.

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降低悬浮液中微生物细胞浓度光学估算方法劳动强度的方法。
对悬浮液微生物细胞计数光学法与Goryaev室微生物细胞计数法的劳动强度(小时)进行了评价。评估悬浮微生物细胞计数方法的生产劳动强度的相关性与在许多研究中使用它们的需要有关。通常常用的方法过于劳动密集,耗时,或需要昂贵的设备。将我们之前开发的“悬浮液中微生物细胞浓度光学估计方法”(优先证书编号2016141859,日期为2016年10月25日)与Goryaev室微生物细胞计数方法进行对比实验。测量的生产劳动强度以小时为单位,计算公式为:Tp=Tt+Tob,其中Tp为生产劳动投入,Tt为技术劳动投入,Tob为维修劳动投入。使用Goryaev室测量的技术劳动投入为32,18±0,95,而使用光学方法测量的技术劳动投入为1,03±0,06 (p
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来源期刊
Klinichescheskaya Laboratornaya Diagnostika
Klinichescheskaya Laboratornaya Diagnostika Health Professions-Medical Laboratory Technology
CiteScore
0.90
自引率
0.00%
发文量
110
期刊介绍: The journal deals with theoretical and practical problems of clinical laboratory diagnosis, publishes editorial articles, reviews of literature, original articles, short reports, discussions, book reviews, current events, materials which may assist the practitioners, methods of laboratory investigations used in medicine, materials on the results of practical application of new methods of investigation in the following fields of clinical laboratory diagnosis: hematology, cytology, coagulation, biochemistry, immunology.
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