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    • 16. 发明公开
    • MICROBE MEASUREMENT SYSTEM AND MICROBE MEASUREMENT METHOD
    • MIKROBENMESSSYSTEM在MIKROBENMESSVERFAHREN
    • EP3121263A1
    • 2017-01-25
    • EP15764190.3
    • 2015-03-13
    • Hitachi Plant Services Co., Ltd.
    • MIYASHITA NoeTANAKA Makoto
    • C12M1/34C12Q1/06G01N21/76G01N21/77G01N33/50
    • C12Q1/04C12Q1/008C12Q1/06C12Q1/66
    • The present invention makes a microorganism measuring system set control reference values with higher accuracy than ever. Based on results of repeated CFU countings and results of repeated ATP measurements, a microorganism measuring system (1) of the present invention obtains a probability density function of ATP measured values in a normal condition; determines an alert reference value at which a desired probability of false positives is equal to or less than a probability, and an action reference value at which a desired probability of false negatives is equal to or less than a probability; and thereby controls the ATP measured values. For this reason, the microorganism measuring system (1) can set the control reference values with higher accuracy than ever, without being influenced by an error in the conversion of ATP contents into CFU counts. Accordingly, the microorganism measuring system (1) can achieve the microbiological control with desired control accuracy.
    • 本发明使得微生物测量系统以比以往更高的精度设定控制参考值。 基于重复CFU计数的结果和重复ATP测量的结果,本发明的微生物测量系统(1)在正常条件下获得ATP测量值的概率密度函数; 确定误报的期望概率等于或小于概率的警报参考值,以及假阴性的期望概率等于或小于概率的动作参考值; 从而控制ATP测量值。 因此,微生物测量系统(1)可以以比以往更高的精度设置控制参考值,而不受ATP内容转换为CFU计数的误差的影响。 因此,微生物测量系统(1)可以以期望的控制精度实现微生物控制。