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    • 24. 发明申请
    • AUTOMATIC ANALYZER
    • 自动分析仪
    • US20140170023A1
    • 2014-06-19
    • US14236659
    • 2012-06-29
    • Yoshiaki SaitoKazuhiro NakamuraNaoto SuzukiToshihide Orihashi
    • Yoshiaki SaitoKazuhiro NakamuraNaoto SuzukiToshihide Orihashi
    • G01N35/04
    • G01N35/04G01N35/0095G01N35/026G01N2035/0415G01N2035/0462
    • In determining whether a rack inputted to the automatic analyzer by the user is to be transferred to an analysis section or not, samples existing in a route from a buffer to a sample dispensing position in the analysis section are identified, and the number of items in which suction by a nozzle has not been completed in analysis items requested for the samples is managed. When the number of items is reduced to be smaller than a given number, the conveyance of a next rack from the buffer to the analysis section is controlled, thereby limiting the number of analysis items requested for samples in a waiting state for analysis in the analysis section constantly to be smaller than a fixed number. As a result, a period of time until a measurement result of emergency samples is outputted can be reduced even when emergency samples are newly inputted.
    • 在确定用户输入到自动分析器的机架是否要转移到分析部分时,识别存在于分析部分中从缓冲器到样品分配位置的路线中的样本,并且在 在对样品所要求的分析项目进行管理的情况下,由喷嘴抽吸尚未完成。 当项目数量减少到小于给定数量时,控制从缓冲器到分析部分的下一个机架的传送,从而限制在分析中用于分析的等待状态下的样品请求的分析项目的数量 部分不断小于固定数。 结果,直到紧急样本的测量结果输出的时间段即使在新输入紧急样本时也可以减少。
    • 25. 发明申请
    • AUTOMATIC ANALYTICAL DEVICE AND METHOD
    • 自动分析装置及方法
    • US20140093426A1
    • 2014-04-03
    • US14117723
    • 2012-05-15
    • Masaaki HiranoKazuhiro Nakamura
    • Masaaki HiranoKazuhiro Nakamura
    • G01N35/10
    • G01N35/1011
    • The device uses a dispensing probe; a dispensing probe drive mechanism having at least one rotation drive shaft as a horizontal drive mechanism for the dispensing probe, a positioning member with a portion, which is contacted by the dispensing probe during positioning, is formed in a circular shape; a contact detection mechanism for detecting contact between the dispensing probe and the positioning member, and a control unit. The control unit drive-controls only one drive shaft into contact with the circular portion of the positioning member, and then drive-controls only one drive shaft other than the previously drive-controlled shaft into contact with the circular portion of the positioning member, and then calculates position information on a center point at a desired position where the dispensing probe is to be positioned, on the basis of position information on each point at which the contact has been detected, or the like.
    • 该设备使用分配探针; 分配探针驱动机构,其具有至少一个旋转驱动轴作为用于分配探针的水平驱动机构,具有一部分的定位构件,其在定位期间与分配探针接触形成为圆形; 用于检测分配探针和定位构件之间的接触的接触检测机构,以及控制单元。 控制单元驱动 - 仅控制一个驱动轴与定位构件的圆形部分接触,然后仅驱动控制除了先前驱动控制的轴之外的一个驱动轴以与定位构件的圆形部分接触,以及 然后根据检测到接触点的每个点的位置信息等,计算位于分配探针所要求的位置的中心点上的位置信息。
    • 26. 发明授权
    • Schedule control program and schedule control method
    • 计划控制程序和进度控制方法
    • US08479205B2
    • 2013-07-02
    • US12006028
    • 2007-12-28
    • Kazuhiro Nakamura
    • Kazuhiro Nakamura
    • G06F9/46
    • G06F9/505G06F9/5033G06F12/0811G06F12/0842
    • A schedule control program that is capable of allocating threads to CPUs so as to effectively use caches. When a thread is executed, the execution start time and the CPU number of a CPU that executes the thread are stored. When an interrupted thread is re-allocated to a CPU to execute it next, an elapsed time t counted from the execution start time is calculated. Time parameters are set to caches that are used by the CPUs in such a way that the higher the level of a cache, the larger time parameter is set. If the elapsed time t is smaller than a time parameter set to an n-level (where n is a natural number of 2 or greater) cache and is equal to or larger than a time parameter set to an (n-1)-level cache, the thread is allocated to a CPU with the lowest load among the CPUs sharing the n-level cache with the last execution CPU.
    • 一种能够向CPU分配线程以便有效地使用高速缓存的时间表控制程序。 当执行线程时,执行线程的执行开始时间和CPU号码被存储。 当中断的线程被重新分配给CPU以执行它时,计算从执行开始时间开始的经过时间t。 时间参数设置为CPU使用的高速缓存,缓存级别越高,时间参数越大。 如果经过时间t小于设置为n级(其中n是2或更大的自然数)的高速缓存的时间参数,并且等于或大于设置为(n-1)级的时间参数 缓存,线程被分配给具有最后执行CPU共享n级缓存的CPU中负载最低的CPU。
    • 27. 发明申请
    • BASE MAKEUP COSMETIC AND METHOD FOR PRODUCING THE SAME
    • 基础化妆品及其制造方法
    • US20120315314A1
    • 2012-12-13
    • US13578766
    • 2011-01-21
    • Kazuhiro NakamuraHideyasu Ishibashi
    • Kazuhiro NakamuraHideyasu Ishibashi
    • A61K8/92A61Q1/02A61K8/02
    • A61K8/19A61K8/0241A61K8/25A61K8/26A61K8/29A61K2800/805A61Q1/02A61Q1/10A61Q1/12
    • A base makeup cosmetic satisfying the relationship expressed by the following Formula (1) and the relationship expressed by the following Formula (2) and exhibiting a hue angle of the cosmetic in a range of from 40° to 80°, wherein, when incident light falls on a light-receiving surface from a direction at −45° relative to the light-receiving surface, the light-receiving surface being a surface of a coating layer obtained by applying the base makeup cosmetic, (C*45) and (angle h*45) respectively represent the chroma (C*45) and hue angle (angle h*45) of reflected light in a specular reflection direction (a direction at)45°; and, when incident light falls on the light-receiving surface from a direction at −45° relative to the light-receiving surface, (C*0) and (angle h*0) respectively represent the chroma (C*0) and hue angle (angle h*0) of reflected light in a diffuse reflection direction (a direction at 0°). (C*0)−(C*45)≦2.0  Formula (1) |(angle h*0)−(angle h*45)|≦1.5  Formula (2)
    • 一种满足由下式(1)表示的关系的基础化妆品和由下式(2)表示的关系,并且化妆品的色相角在40°至80°的范围内,其中当入射光 从相对于受光面的-45°的方向落在光接收表面上,受光面是通过涂敷基底化妆品(C * 45)和(角度)的角度得到的涂层的表面 h * 45)分别表示镜面反射方向(45°方向)的反射光的色度(C * 45)和色调角(角度* 45)。 并且当入射光相对于受光面从-45°的方向入射到受光面上时,(C * 0)和(角度h * 0)分别表示色度(C * 0)和色相 反射光在漫反射方向(0°方向)的角度(角度h * 0)。 (C * 0) - (C * 45)≦̸ 2.0公式(1)|(角度h * 0) - (角度h * 45)|&
    • 29. 发明申请
    • AUTOMATIC ANALYZER
    • 自动分析仪
    • US20120036944A1
    • 2012-02-16
    • US13264996
    • 2010-04-07
    • Satoru ChidaHirokazu IwamatsuKano ShimizuKazuhiro NakamuraKiyotaka Umino
    • Satoru ChidaHirokazu IwamatsuKano ShimizuKazuhiro NakamuraKiyotaka Umino
    • G01N1/22
    • G01N35/026G01N35/00613G01N35/00732G01N2035/0465
    • The present invention provides an automatic analyzer, in which when a specimen that cannot be analyzed due to an abnormality or needs to be remeasured exists, the automatic analyzer can swiftly reload the specimen that cannot be analyzed due to the abnormality or needs to be remeasured without waiting for completion of a measurement of another specimen held by a rack holding the specimen that cannot be analyzed or needs to be remeasured. The automatic analyzer has means for storing information of a rack loaded in the analyzer and specimen information, displaying identification information of the rack loaded in the analyzer to a user, specifying a specimen that needs to be reanalyzed due to an abnormality or needs to be collected for a remeasurement, interrupting analysis of a specimen rack holding the specimen, and collecting the specimen rack. The automatic analyzer can collect and reload the specified specimen.
    • 本发明提供了一种自动分析装置,其中当存在由于异常或不需要重新测量而不能分析的样本时,自动分析仪可以迅速重新加载由于异常而无法分析的样本,或需要重新测量而没有 等待完成由保持标本的不能分析或需要重新测量的支架的另一个样本的测量。 自动分析装置具有用于存储装载在分析装置中的机架的信息和样本信息的装置,向用户显示装载在分析装置中的机架的识别信息,指定由于异常而需要重新分析的样本或需要收集 进行重新测量,中断对保持试样的检体架的分析,并收集标本架。 自动分析仪可以收集和重新装载指定的样品。
    • 30. 发明申请
    • AUTOMATIC ANALYZER AND SUPPORT SYSTEM THEREFOR
    • 自动分析仪及其支持系统
    • US20110259129A1
    • 2011-10-27
    • US13141882
    • 2009-12-04
    • Sumiko MurataSatoshi ShibuyaKazuhiro Nakamura
    • Sumiko MurataSatoshi ShibuyaKazuhiro Nakamura
    • G01D7/00
    • G01N35/00693G01N35/00732
    • With a conventional automatic analyzer, when a standard solution sample or quality control sample that require subjecting to reanalysis is identified during analysis to prepare for subsequent analysis, it will take time until the sample in question is identified.An automatic analyzer according the present invention includes display means for displaying identification information by which measurement status of a standard solution sample or a quality control sample can be identified. The display means includes a function of selectively displaying the identifier following a change in measurement status for each sample. Thus an operator can immediately recognize a sample having been used for analysis, leading to shortening the time duration up to subsequent analysis.
    • 使用传统的自动分析仪,当在分析过程中识别需要进行再分析的标准溶液样品或质量控制样品以准备进行后续分析时,需要时间才能确定所述样品。 根据本发明的自动分析装置包括显示装置,用于显示可以识别标准溶液样品或质量控制样品的测量状态的识别信息。 显示装置包括在每个样本的测量状态改变之后选择性地显示标识符的功能。 因此,操作者可以立即识别已经用于分析的样品,导致缩短直至后续分析的持续时间。