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    • 5. 发明授权
    • High confidence in positive status determination
    • US10337046B2
    • 2019-07-02
    • US12918019
    • 2008-02-19
    • Patrick Shawn Beaty
    • Patrick Shawn Beaty
    • C12Q1/04
    • Systems, methods, and apparatus for determining whether a culture in a vessel contains a plurality of microorganisms are provided. A normalization relative value is calculated for each respective measurement of a biological state of the culture between (i) the respective measurement and (ii) an initial biological state. For each fixed interval of time points, a derivative of the normalization relative values in the interval of time points is calculated, thereby forming a plurality of rate transformation values. For each set of rate transformation values in the plurality of rate transformation values, a measure of central tendency of the values in the set is computed, thereby forming a plurality of average relative transformation values. A determination whether the culture contains the microorganisms is made based on whether any calculated average relative transformation value exceeds a first threshold or whether an extent of growth exhibited by the culture exceeds a second threshold.
    • 6. 发明申请
    • SYSTEMS AND METHODS FOR PRESUMPTIVE IDENTIFICATION OF MICROORGANISM TYPE IN A CULTURE
    • 用于文化中微生物类型的预测鉴定的系统和方法
    • US20110208432A1
    • 2011-08-25
    • US12918011
    • 2008-02-19
    • Patrick Shawn Beaty
    • Patrick Shawn Beaty
    • G06F19/00G01N33/48
    • C12Q1/04C12M41/46
    • Systems, methods and apparatus for identifying a microorganism type in a culture are provided. A normalization relative value is calculated for each respective measurement of a biological state of the culture between (i) the respective measurement and (ii) an initial biological state. For each fixed interval of time points, a first derivative of the normalization relative values in the interval of time points is calculated, thereby forming a plurality of rate transformation values. For each respective set of rate transformation values in the plurality of rate transformation values, a measure of central tendency of the rate transformation values in the set is computed, thereby forming a plurality of average relative transformation values. A maximum metabolic rate and an extent of growth, determined from the normalization relative values and the average relative transformation values, are compared against a lookup table that matches these values to a microorganism type.
    • 提供了用于鉴定培养物中的微生物类型的系统,方法和装置。 对于(i)各测量和(ii)初始生物状态之间的培养生物状态的每个相应测量,计算归一化相对值。 对于每个固定的时间间隔,计算时间间隔中的归一化相对值的一阶导数,从而形成多个速率变换值。 对于多个速率变换值中的每一组速率变换值,计算该组中速率变换值的集中趋势的度量,由此形成多个平均相对变换值。 将从归一化相对值和平均相对转化值确定的最大代谢率和生长程度与将这些值与微生物类型相匹配的查找表进行比较。
    • 7. 发明申请
    • DETERMINATION OF BLOOD VOLUME IN A CULTURE BOTTLE
    • 文化瓶中血液体积的测定
    • US20110029249A1
    • 2011-02-03
    • US12867980
    • 2008-02-19
    • Patrick Shawn Beaty
    • Patrick Shawn Beaty
    • G06F19/00G01J1/58
    • G01N21/27G01N21/6428G01N2021/3144G16H40/63Y02A90/26
    • Systems, methods and apparatus for determining an amount of blood in a blood culture are provided where an initial biological state and then periodic measurements of the biological state of the culture are taken. For each respective measurement, a normalization relative value between the respective measurement and the initial measurement is made thereby forming normalization relative values. For each interval of time points represented by the normalization relative values, a first derivative of the normalization relative values in the interval is made thereby forming a plurality of rate transformation values. For each set of rate transformation values in the plurality of rate transformation values, an average relative transformation value is computed, thereby forming average relative transformation values. A lookup table that matches a measure of central tendency of the average relative transformation values to a blood amount is used to determine the amount of blood in the culture.
    • 提供用于确定血液培养物中的血液量的系统,方法和装置,其中采用初始生物状态,然后对培养物的生物状态进行周期性测量。 对于各个测量,进行各测量与初始测量之间的归一化相对值,由此形成归一化相对值。 对于由归一化相对值表示的每个时间间隔的间隔,由此形成间隔中的归一化相对值的一阶导数,从而形成多个速率变换值。 对于多个速率变换值中的每组速率变换值,计算平均相对变换值,从而形成平均相对变换值。 使用将平均相对转化值与血液量的中心倾向度量相匹配的查找表来确定培养物中的血液量。
    • 9. 发明申请
    • HIGH CONFIDENCE IN POSITIVE STATUS DETERMINATION
    • 高度信心的积极状态决定
    • US20110029252A1
    • 2011-02-03
    • US12918019
    • 2008-02-19
    • Patrick Shawn Beaty
    • Patrick Shawn Beaty
    • G06F19/00G01N33/48
    • C12Q1/04
    • Systems, methods, and apparatus for determining whether a culture in a vessel contains a plurality of microorganisms are provided. A normalization relative value is calculated for each respective measurement of a biological state of the culture between (i) the respective measurement and (ii) an initial biological state. For each fixed interval of time points, a derivative of the normalization relative values in the interval of time points is calculated, thereby forming a plurality of rate transformation values. For each set of rate transformation values in the plurality of rate transformation values, a measure of central tendency of the values in the set is computed, thereby forming a plurality of average relative transformation values. A determination whether the culture contains the microorganisms is made based on whether any calculated average relative transformation value exceeds a first threshold or whether an extent of growth exhibited by the culture exceeds a second threshold.
    • 提供了用于确定容器中的培养物是否含有多种微生物的系统,方法和装置。 对于(i)各测量和(ii)初始生物状态之间的培养生物状态的每个相应测量,计算归一化相对值。 对于每个固定的时间间隔,计算时间间隔中的归一化相对值的导数,从而形成多个速率变换值。 对于多个速率变换值中的每组速率变换值,计算集合中的值的集中趋势的度量,从而形成多个平均相对变换值。 基于任何计算的平均相对转化值是否超过第一阈值或培养物显示的生长程度是否超过第二阈值来确定培养物是否含有微生物。