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Heterotrophic plate counts of surface water samples by using impedance methods.

机译:通过使用阻抗方法对地表水样品进行异养板计数。

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摘要

Membrane filtration, spread plating, and pour plating are conventional methods used to determine the heterotrophic plate counts of water samples. Impedance methods were investigated as an alternative to conventional methods, since sample dilution is not required and the bacterial count can be estimated within 24 h. Comparisons of impedance signals obtained with different water samples revealed that capacitance produced faster detection times than conductance. Moreover, the correlation between heterotrophic plate count and detection time was highest (r = 0.966) when capacitance was used. Linear and quadratic regressions of heterotrophic plate count and impedance detection time were affected by incubation temperatures. Regressions between heterotrophic plate counts based on conventional methods and detection times of water samples incubated at less than or equal to 25 degrees C had R2 values of 0.878 to 0.933. However, regressions using detection times of water samples incubated at greater than or equal to 30 degrees C had lower R2 values, even though water samples produced faster detection times. Comparisons between broth-based versions of R2A medium and plate count agar revealed that the latter correlated highly with heterotrophic plate count, provided that water samples were incubated at 25 degrees C and impedance measurements were conducted with the capacitance signal (r = 0.966). When the linear regression of this relationship was tested with 100 water samples, the correlation between predicted and actual log10 CFU milliliter-1 was 0.869. These results indicate that impedance methods provide a suitable alternative to conventional methods.
机译:膜过滤,铺板和灌注板是用于确定水样品异养板数的常规方法。由于不需要样品稀释并且可以在24小时内估算细菌数,因此对阻抗方法进行了研究以替代传统方法。比较不同水样获得的阻抗信号后发现,电容产生的检测时间比电导产生的速度更快。此外,当使用电容时,异养平板数与检测时间之间的相关性最高(r = 0.966)。异养菌板数和阻抗检测时间的线性和二次回归受孵育温度的影响。基于常规方法的异养菌板数之间的回归以及在小于或等于25摄氏度下孵育的水样品的检测时间的R2值为0.878至0.933。但是,使用在大于或等于30摄氏度下孵育的水样品的检测时间进行回归分析得出的R2值较低,即使水样品的检测时间更快。基于肉汤的R2A培养基版本和平板计数琼脂之间的比较表明,只要将水样品在25°C下孵育并且使用电容信号进行阻抗测量(r = 0.966),后者与异养平板计数高度相关。当用100个水样品检验这种关系的线性回归时,预测的log10 CFU和实际的log10 CFU毫升-1之间的相关性是0.869。这些结果表明,阻抗方法提供了传统方法的合适替代方法。

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