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    • 2. 发明申请
    • Medical Care Support System
    • 医疗支援系统
    • US20130317847A1
    • 2013-11-28
    • US13978084
    • 2011-12-08
    • Shuntaro YuiKumiko SetoMasayuki OhtaSatoshi Mitsuyama
    • Shuntaro YuiKumiko SetoMasayuki OhtaSatoshi Mitsuyama
    • G06Q10/06G06Q50/22
    • G06Q10/0633G06Q10/06311G06Q50/22
    • The present invention is a system for supporting an evaluation of workflow step items on the basis of a workflow by classifying workflow steps so as to have a common medical-related work by using a medical information database in which a workflow, which is a flow of the medical-related work, and information on respective workflow steps are stored in association with medical information, creating workflow step items having a parent and child identifier identified between a parent department as a client and a child department as a requested party and the medical information, calculating a workflow step evaluation value, which is an evaluation value of the workflow step item on the basis of the clinical indicator of the workflow, and displaying the same on a screen.
    • 本发明是一种用于通过对工作流步骤进行分类来支持工作流步骤项目的评价的系统,以便通过使用医疗信息数据库来进行通常的医疗相关工作,其中,作为流程 与医疗信息相关联地存储与医疗相关的工作和关于各个工作流步骤的信息,创建具有作为客户的父部门和作为请求方的儿童部门之间识别的父和子标识符的工作流步骤项目和医疗信息 根据工作流程的临床指标,计算作为工作流步骤项目的评估值的工作流程步骤评价值,并将其显示在画面上。
    • 3. 发明申请
    • Data analysis system and data analysis method
    • 数据分析系统和数据分析方法
    • US20060282222A1
    • 2006-12-14
    • US11212696
    • 2005-08-29
    • Satoshi MitsuyamaKumiko SetoTakahiko Shintani
    • Satoshi MitsuyamaKumiko SetoTakahiko Shintani
    • G06F19/00
    • G16H50/20G16H10/60
    • A data analysis apparatus has a first storage for storing information, a second storage for storing association between information, a unit for setting a condition to divide the information into a plurality of groups on the basis of association between the information stored in the second storage, a unit for setting an item to compare information divided into a plurality of groups, a unit for setting a condition to extract information to be compared, and an evaluation unit for extracting information that satisfies the condition for extracting information from the first storage, dividing information extracted on the basis of the condition for dividing the information into groups into a plurality of groups, and calculating evaluation values to conduct comparison as to a comparison item for each group.
    • 数据分析装置具有用于存储信息的第一存储器,用于存储信息之间的关联的第二存储器,用于基于存储在第二存储器中的信息之间的关联来设置将信息划分成多个组的条件的单元, 用于设置项目以比较分成多个组的信息的单元,用于设置要提取要比较的信息的条件的单元,以及用于提取满足从第一存储提取信息的条件的信息的评估单元,分割信息 根据将信息分组为多个组的条件提取,并且计算评价值,以对每组的比较项进行比较。
    • 5. 发明授权
    • Automatic analyzer and analysis method
    • 自动分析仪和分析方法
    • US09310388B2
    • 2016-04-12
    • US13318535
    • 2010-04-12
    • Kumiko KamiharaSatoshi MitsuyamaTomonori MimuraChihiro Manri
    • Kumiko KamiharaSatoshi MitsuyamaTomonori MimuraChihiro Manri
    • G01C19/00G01N35/00G01N21/27
    • 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。
    • 8. 发明授权
    • Automatic analysis device and automatic analysis program
    • 自动分析装置和自动分析程序
    • US09562917B2
    • 2017-02-07
    • US14117717
    • 2012-04-17
    • Chihiro ManriSatoshi MitsuyamaTomonori MimuraKumiko Kamihara
    • Chihiro ManriSatoshi MitsuyamaTomonori MimuraKumiko Kamihara
    • G01N31/00G01N35/00G01N35/04
    • G01N35/00584G01N35/00693G01N2035/00673G01N2035/00702G01N2035/0453
    • Accuracy control of an automatic analysis device that mixes a sample and a reagent to measure temporal change of a mixed solution is realized. A plurality of measurement point data is acquired from a reaction process of the sample and the reagent. Parameters and test values of approximate equations for approximating the plurality of measurement point data are accumulated in a storage unit. A distribution map of reference data corresponding to the parameters or the test values is created based on predetermined numbers of the parameters or the test values accumulated in the storage unit. Next, a plurality of screens for individually superimposing, on the distribution map, curved lines corresponding to a plurality of regression function candidates obtained by applying a plurality of regression functions are arranged and presented on a display screen, so as to approximate the data to the distribution map of the reference data.
    • 实现了混合样品和试剂以测量混合溶液的时间变化的自动分析装置的精度控制。 从样品和试剂的反应过程获取多个测量点数据。 用于近似多个测量点数据的近似等式的参数和测试值被累积在存储单元中。 基于在存储单元中累积的参数或测试值的预定数量来创建与参数或测试值相对应的参考数据的分布图。 接下来,在分配图上单独叠加多个屏幕,将与通过应用多个回归函数获得的多个回归函数候选对应的曲线布置并呈现在显示屏上,以将数据近似为 参考数据的分布图。
    • 9. 发明授权
    • Automatic analyzer
    • 自动分析仪
    • US09488667B2
    • 2016-11-08
    • US13318819
    • 2010-04-12
    • Kumiko KamiharaSatoshi MitsuyamaTomonori MimuraChihiro Manri
    • Kumiko KamiharaSatoshi MitsuyamaTomonori MimuraChihiro Manri
    • G01C19/00G01N35/00
    • G01N35/00613G01N2035/0097
    • To change a photometric time for each item or to change a measurement time for each specimen so that time required for biochemical measurement can be reduced, an index that indicates an end of a reaction is required. Unfortunately, however, no methods have been available for determining the end of the reaction. In measuring a substance to be measured contained in a sample, a parameter in an approximate expression is calculated using a measured value that changes with time, a degree of convergence of a reaction is determined according to a degree of convergence of the parameter, and a measured value at the end of the reaction is calculated using the parameter at a point in time at which it is determined that the reaction has converged.
    • 要更改每个项目的光度时间或更改每个样品的测量时间,以便可以减少生物化学测量所需的时间,则需要指示反应结束的指标。 然而,不幸的是,没有方法可用于确定反应的结束。 在测定样品中含有的待测物质时,使用随时间变化的测定值来计算近似表达式中的参数,根据参数的收敛程度确定反应的收敛程度, 使用在确定反应已经收敛的时间点的参数来计算反应结束时的测量值。
    • 10. 发明授权
    • Flow type particle image analysis method and device
    • 流式粒子图像分析方法及装置
    • US08831306B2
    • 2014-09-09
    • US13375249
    • 2010-05-17
    • Chihiro ManriNorio OowadaSatoshi Mitsuyama
    • Chihiro ManriNorio OowadaSatoshi Mitsuyama
    • G06K9/00G06K9/40G01N15/14
    • G01N15/1459G01N2015/1452
    • At each of mutually different multiple focal positions, focal adjustment parameter values are obtained from images of standard particles made of the same substance. Each focal adjustment parameter value is figured out as any one of the ratio between the density value around the center of the standard particle image and the density value around the outline, the difference therebetween, and the density value around the center. The in-focus position is adjusted on the basis of the relationship between the obtained focal adjustment parameter values and the focal positions. Moreover, on the basis of the relationship between the focal adjustment parameter values and the focal positions, the parameter values are converted into focal positions, and the focal positions and dispersion thereof are used to check the displacement of the in-focus position and the thickness of the sample liquid.
    • 在每个相互不同的多个焦点位置,从相同物质制成的标准粒子的图像中获得焦点调整参数值。 每个焦点调整参数值被计算为标准颗粒图像的中心附近的密度值与轮廓周围的密度值之间的比率,它们之间的差异以及围绕中心的密度值之间的任何一个。 基于获得的焦点调整参数值和焦点位置之间的关系来调整对焦位置。 此外,基于焦点调整参数值与焦点位置之间的关系,参数值被转换为焦点位置,并且其焦点位置和色散用于检查对焦位置和厚度的位移 的样品液体。