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    • 4. 发明申请
    • ANTIBIOTIC SENSITIVITY TESTING METHOD
    • 抗生素敏感性测试方法
    • WO2008107881A3
    • 2010-02-18
    • PCT/IL2008000283
    • 2008-03-05
    • POCARED DIAGNOSTICS LTDINGBER GALGURFINKEL JONATHAN
    • INGBER GALGURFINKEL JONATHAN
    • C12N1/20
    • G01N33/9446
    • The method includes several steps including obtaining a bacterial sample; identifying the type of bacteria in the bacterial sample; selecting a set of antibiotics based on the identity of the bacteria in the bacterial sample; obtaining a control sample from the bacterial sample; placing the bacterial sample in solutions containing the set of antibiotics; determining concentration of bacteria in the respective antibiotic solutions; determining growth curves for the respective antibiotic solutions based on the determined bacterial concentration; and comparing the growth curves for the respective antibiotic solutions with a growth curve determined from the control sample. An identification and quantification system may be used to select the set of antibiotics, and further may be used in the steps of determining concentration of bacteria in the respective antibiotic solutions and determining growth curves for the respective antibiotic solutions based on the determined bacterial concentration.
    • 该方法包括几个步骤,包括获得细菌样品; 鉴定细菌样品中的细菌类型; 根据细菌样本中细菌的特征选择一组抗生素; 从细菌样品获得对照样品; 将细菌样品置于含有该组抗生素的溶液中; 确定各抗生素溶液中​​细菌的浓度; 基于确定的细菌浓度确定各抗生素溶液的生长曲线; 并将各抗生素溶液的生长曲线与从对照样品确定的生长曲线进行比较。 可以使用识别和定量系统来选择该组抗生素,并且还可以用于确定各抗生素溶液中​​细菌浓度的步骤,并且基于确定的细菌浓度确定各抗生素溶液的生长曲线。
    • 7. 发明申请
    • IRIS CONTROL SYSTEM FOR CONDUCTING THE IDENTIFICATION OF BACTERIA IN BIOLOGICAL SAMPLES
    • 用于诱导生物样品中细菌鉴定的IRIS控制系统
    • WO2012103174A2
    • 2012-08-02
    • PCT/US2012022488
    • 2012-01-25
    • POCARED DIAGNOSTICS INCINGBER GAL
    • INGBER GAL
    • C12M1/34C12M1/12C12M1/42C12Q1/04
    • G01N21/07G01N21/31G01N2201/063
    • A system and a method for optimizing an iris setting, used in combination with a lamp, for each excitation wavelength for each carousel run in an apparatus for identifying and measuring bacteria in biological samples. The system includes a feedback control loop positioned between a filter wheel and an optical cup for measuring the intensity level of the excitation wavelength, and feeding this information to an iris having an iris setting control device such that the iris setting may be adjusted based upon the measured intensity level to control and optimize the level of light fed to the filter wheel from the lamp. The iris setting can be adjusted so that the level of light fed to the filter wheel remains constant during the lifetime of the lamp and to ensure that the level of light fed to the sample remains below the level at which photo-bleaching occurs.
    • 用于在用于识别和测量生物样品中的细菌的装置中运行的每个转盘的每个激发波长优化与灯组合使用的虹膜设置的系统和方法。 该系统包括位于滤光轮和光学杯之间的反馈控制回路,用于测量激发波长的强度水平,并将该信息馈送到具有光圈设置控制装置的光圈,使得可以基于 测量强度水平以控制和优化从灯进入滤光轮的光的水平。 可以调节光圈设置,使得在灯的寿命期间馈送到滤光轮的光的水平保持恒定,并且确保馈送到样品的光的水平保持低于发生光漂白的水平。