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    • 63. 发明授权
    • Method for assisting judgment of abnormality of reaction process data and automatic analyzer
    • 协助判断反应过程数据异常和自动分析仪的方法
    • US09217712B2
    • 2015-12-22
    • US12995219
    • 2009-05-28
    • Satoshi MitsuyamaYuki FukuyamaHidekatsu TakadaHideyuki BanTomonori Mimura
    • Satoshi MitsuyamaYuki FukuyamaHidekatsu TakadaHideyuki BanTomonori Mimura
    • G06F19/00G01N35/00G01N21/00G01N21/77
    • G01N21/77G01N21/272G01N21/78G01N35/00603G01N2035/0097
    • In the event of a suspected abnormality in the device, sample or reagent, a laboratory technician had to examine the abnormal reaction process data item by item, and infer the cause of the abnormality, which took effort and time in some cases. Abnormality judgment is assisted using: indicator computation means that computes an indicator indicating a feature parameter of a given waveform by applying a pre-defined evaluation formula to time series data of photometric values; relative indicator computation means that computes a value indicating a relationship of the indicator of target data to the indicator computed in the past; and indicator display means that simultaneously displays a value computed by the indicator computation means and the value computed by the relative indicator computation means. According to the present method, which is a method for assisting judgment of abnormality wherein a feature parameter of a given absorbance change is computed, it can be made easier to find certain abnormalities, and it becomes possible to attain more efficient device maintenance and improved device reliability without the addition of any new parts.
    • 如果装置,样品或试剂中有疑似异常,实验室技术人员必须逐项检查异常反应过程数据,并推断异常的原因,在某些情况下花费时间和精力。 协助使用以下方式辅助异常判断:指标计算装置,通过对光度值的时间序列数据应用预定义的评估公式来计算指示给定波形的特征参数的指标; 相对指标计算是指计算出目标数据指标与过去计算出的指标的关系的值; 指示符显示装置,同时显示由指标计算装置计算的值和由相关指标计算装置计算的值。 根据本方法,其是计算给定吸光度变化的特征参数的异常判断方法,可以更容易地发现某些异常,并且可以实现更有效的装置维护和改进装置 可靠性无需添加任何新零件。
    • 64. 发明授权
    • Management system for an electrolyte analyzer
    • 电解质分析仪管理系统
    • US08871080B2
    • 2014-10-28
    • US13514187
    • 2010-11-10
    • Qing LiTomonori MimuraShinichi Fukuzono
    • Qing LiTomonori MimuraShinichi Fukuzono
    • G01N27/333
    • G01N27/333
    • Electrolyte analyzers are used in a variety of ways, and problems vary from reagent deterioration due to reagent replenishment, mixing of foreign substances during reagent replenishment, electrode deterioration due to the passage of the validity date, to the operator's inputting errors. It is thus necessary to judge abnormalities of measured values resulting from such inappropriate usage, based on the fluctuation patterns of the results of daily electrolyte calibration. The fluctuation patterns of each measured item are extracted from the results of daily electrolyte calibration. The electromotive force balance ratio between the internal standard solution and high/low-concentration standard solutions is calculated as well as its fluctuation pattern. The obtained fluctuation patterns are compared against atypical fluctuation patterns stored in the electrolyte analyzer. When any of the extracted patterns matches any of the atypical patterns, the analyzer activates an alarm.
    • 以各种方式使用电解质分析仪,由于试剂补充,试剂补充期间的异物混合,有效期限以后的电极劣化,操作者的输入错误,试剂劣化的问题变化。 因此,基于每日电解质校准的结果的波动模式,需要判断由这种不当使用引起的测量值的异常。 从日常电解质校准的结果中提取每个测量项目的波动模式。 计算内标溶液与高/低浓度标准溶液之间的电动势平衡比及其波动模式。 将获得的波动模式与存储在电解质分析仪中的非典型波动模式进行比较。 当任何提取的图案与任何非典型图案匹配时,分析仪启动报警。
    • 67. 发明申请
    • BLOOD COAGULATION ANALYZER
    • 血液凝聚分析仪
    • US20120282139A1
    • 2012-11-08
    • US13509661
    • 2010-11-19
    • Akihisa MakinoTomonori MimuraTerumi TamuraSakuichiro Adachi
    • Akihisa MakinoTomonori MimuraTerumi TamuraSakuichiro Adachi
    • G01N21/75
    • G01N21/51G01N21/532G01N21/82G01N33/18G01N33/1826G01N33/4905G01N33/86G01N2021/4711G01N2021/825
    • A blood coagulation analyzer that realizes both securement of a wide dynamic range and enhancement of sensitivity in blood coagulation analysis by selecting an appropriate angle of detection depending on the intensity of scattered light from each specimen without causing complexity of the analyzer. The analyzer has a reaction container. A storage unit is provided which takes in and stores multiple pieces of chronological light intensity variation data acquired from detectors arranged around a reaction container. A judgment unit selects light intensity variation data to be used for calculation of a blood coagulation time from the multiple pieces of light intensity variation data stored in the storage unit based on the amount of light intensity variation. A calculation unit calculates the blood coagulation time from the light intensity variation data selected by the judgment unit.
    • 一种血液凝固分析仪,其通过根据来自每个样本的散射光的强度选择适当的检测角度,而不会导致分析仪的复杂性,实现了动态范围的确定和凝固分析中的灵敏度的提高。 分析仪具有反应容器。 提供一种存储单元,其存储并存储从设置在反应容器周围的检测器获取的多个按时间顺序的光强度变化数据。 判断单元基于光强度变化量从存储在存储单元中的多个光强度变化数据中选择要用于计算凝血时间的光强度变化数据。 计算单元根据由判断单元选择的光强度变化数据计算凝血时间。
    • 68. 发明申请
    • AUTOMATIC ANALYZER AND ANALYSIS METHOD
    • 自动分析仪和分析方法
    • US20120109534A1
    • 2012-05-03
    • US13318535
    • 2010-04-12
    • Kumiko KamiharaSatoshi MitsuyamaTomonori MimuraChihiro Manri
    • Kumiko KamiharaSatoshi MitsuyamaTomonori MimuraChihiro Manri
    • G06F19/00
    • G01N35/00603G01N21/272
    • In known automatic analyzers for detecting an abnormality by approximating reaction process data using a function, accuracy of detecting a reaction abnormality is degraded because of poor approximation accuracy depending on test items. Data processing means stores the absorbance and time of day at which the absorbance is measured as time-series data. Letting x denote absorbance, t denote time, and * denote a symbol representing multiplication, we have a function x=a0+a1*exp(−k1*t)+a2*exp(−k2*t). Values of parameters a0, a1, a2, ai, k1, and k2 are calculated so that a difference between the absorbance at the measured time calculated using the above expression and the time-series data is minimal, and presence of an abnormality is determined based on the parameter values.
    • 在用于通过使用功能近似反应过程数据来检测异常的已知的自动分析器中,由于根据测试项目的近似精度不足,检测反应异常的精度降低。 数据处理装置将吸光度和吸光度时间的时间存储为时间序列数据。 令x表示吸光度,t表示时间,*表示表示乘法的符号,我们有函数x = a0 + a1 * exp(-k1 * t)+ a2 * exp(-k2 * t)。 计算参数a0,a1,a2,ai,k1和k2的值,使得使用上述表达式计算的测量时间的吸光度与时间序列数据之间的差异最小,并且基于 对参数值。
    • 70. 发明申请
    • ACCURACY MANAGEMENT METHOD
    • 准确管理方法
    • US20120000268A1
    • 2012-01-05
    • US13141984
    • 2009-11-19
    • Qing LiTomonori MimuraShinichi FukuzonoNaomi Ishii
    • Qing LiTomonori MimuraShinichi FukuzonoNaomi Ishii
    • G01D18/00
    • G01N35/00693G01D18/00G01N35/00613G01N35/00712G01N35/025Y10T436/10Y10T436/11
    • It is convenient and useful in inspection work to assess a fluctuation pattern of accuracy management results based on operation events occurring in a clinical laboratory and detect an abnormal fluctuation pattern before a control range is exceeded. However, an accuracy management system having such a function is not provided. When the cause of fluctuations in accuracy management results or calibration results is to be estimated, one depends on a variety of related information and one's specialized knowledge and experience. Much time and efforts are required to sort out useful pieces of information from useless ones and obtain organized information.There is provided a comprehensive accuracy management method attained by including the steps of: displaying operation event information in time series in an accuracy management result chart or a calibration result chart on the same screen; accumulating a characteristic daily measurement value fluctuation pattern on the basis of a kind of an operation event; displaying the latest fluctuation pattern of measurement results and the daily measurement value fluctuation pattern in superposition with each other to warn of fluctuations which differ from the daily measurement value fluctuation pattern; and estimating and reporting the cause of the fluctuations.
    • 在检验工作中,根据临床实验室发生的手术事件评估精度管理结果的波动模式,检测出超出控制范围之前的异常波动模式,方便实用。 然而,没有提供具有这种功能的精度管理系统。 当准确管理结果波动的原因或校准结果被估计时,一个取决于各种相关信息和专业知识和经验。 需要大量时间和精力从无用的信息中整理出有用的信息,并获得有组织的信息。 提供了一种全面的准确度管理方法,其包括以下步骤:在同一屏幕上的精度管理结果图表或校准结果图表中以时间序列显示操作事件信息; 基于操作事件的种类积累特征的日测量值波动模式; 显示测量结果的最新波动模式和每日测量值波动模式相互叠加以警告与日测量值波动模式不同的波动; 并估计和报告波动的原因。