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    • 1. 发明授权
    • Particle suspensions used as low-contrast standards for inspection of liquids
    • 用作液体检查的低对比度标准的颗粒悬浮液
    • US09562846B2
    • 2017-02-07
    • US14324872
    • 2014-07-07
    • KLA-Tencor Corporation
    • Francisco KoleJohannes G. M. ChristiaanseGreg KirkWinfred Tee Chow
    • G01N15/02G01N21/27G01N15/00G01N15/06G01N1/28
    • G01N21/278G01N15/0227G01N15/06G01N15/0656G01N21/4785G01N2001/2893G01N2015/0065G01N2015/0294G01N2015/0687G01N2015/0693
    • In certain embodiments, a method for validating the human visual inspection process or an optical analysis instrument for use with biological particles may include inspecting a standard particle solution using the optical analysis instrument. The standard particle solution may include a known concentration of standard particles suspended in solution with the standard particles having a defined size and shape distribution. The standard particles may have a refractive index that is substantially similar to a refractive index of the biological particles. The method may include assessing a concentration of standard particles in the standard particle solution from the inspection. The method may include assessing a difference between the assessed concentration of standard particles and the known concentration of standard particles. The method may include modifying one or more parameters of the optical analysis instrument based on the assessed difference between the concentrations. The method may include assessing a detection efficiency of the optical analysis instrument.
    • 在某些实施例中,用于验证人类视觉检查过程的方法或用于生物颗粒的光学分析仪器可以包括使用光学分析仪器检查标准颗粒溶液。 标准颗粒溶液可以包括悬浮在溶液中的已知浓度的标准颗粒,其中标准颗粒具有确定的尺寸和形状分布。 标准颗粒可以具有基本上类似于生物颗粒的折射率的折射率。 该方法可以包括从检查中评估标准颗粒溶液中的标准颗粒的浓度。 该方法可以包括评估所评估的标准颗粒浓度与标准颗粒的已知浓度之间的差异。 该方法可以包括基于所评估的浓度差异修改光学分析仪器的一个或多个参数。 该方法可以包括评估光学分析仪器的检测效率。
    • 2. 发明申请
    • PARTICLE SUSPENSIONS USED AS LOW-CONTRAST STANDARDS FOR INSPECTION OF LIQUIDS
    • 颗粒悬浮液用作检验液体的低对比标准
    • US20150015872A1
    • 2015-01-15
    • US14324872
    • 2014-07-07
    • KLA-Tencor Corporation
    • Francisco KoleJohannes G. M. ChristiaanseGreg KirkWinfred Tee Chow
    • G01N21/41G01N33/15G01N15/00
    • G01N21/278G01N15/0227G01N15/06G01N15/0656G01N21/4785G01N2001/2893G01N2015/0065G01N2015/0294G01N2015/0687G01N2015/0693
    • In certain embodiments, a method for validating the human visual inspection process or an optical analysis instrument for use with biological particles may include inspecting a standard particle solution using the optical analysis instrument. The standard particle solution may include a known concentration of standard particles suspended in solution with the standard particles having a defined size and shape distribution. The standard particles may have a refractive index that is substantially similar to a refractive index of the biological particles. The method may include assessing a concentration of standard particles in the standard particle solution from the inspection. The method may include assessing a difference between the assessed concentration of standard particles and the known concentration of standard particles. The method may include modifying one or more parameters of the optical analysis instrument based on the assessed difference between the concentrations. The method may include assessing a detection efficiency of the optical analysis instrument.
    • 在某些实施例中,用于验证人类视觉检查过程的方法或用于生物颗粒的光学分析仪器可以包括使用光学分析仪器检查标准颗粒溶液。 标准颗粒溶液可以包括悬浮在溶液中的已知浓度的标准颗粒,其中标准颗粒具有确定的尺寸和形状分布。 标准颗粒可以具有基本上类似于生物颗粒的折射率的折射率。 该方法可以包括从检查中评估标准颗粒溶液中的标准颗粒的浓度。 该方法可以包括评估所评估的标准颗粒浓度与标准颗粒的已知浓度之间的差异。 该方法可以包括基于所评估的浓度差异修改光学分析仪器的一个或多个参数。 该方法可以包括评估光学分析仪器的检测效率。