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    • 1. 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。
    • 3. 发明申请
    • AUTOMATIC ANALYSIS APPARATUS
    • 自动分析仪
    • US20120039748A1
    • 2012-02-16
    • US13202337
    • 2010-02-24
    • Tomonori MimuraAkihisa MakinoSakuichiro Adachi
    • Tomonori MimuraAkihisa MakinoSakuichiro Adachi
    • G01N33/00
    • G01N35/025G01N2035/0455
    • An automatic analysis apparatus capable of testing a plurality of items with high accuracy and at low cost without increasing the size of the apparatus is provided. An automatic analysis apparatus 1 having test mechanisms for a plurality of items including a photometric mechanism 70 and flow analysis mechanisms 40a and 40b is provided with a common disk (disk for reaction and pretreatment) 20. In the common disk 20, fixed containers 21 fixed to the common disk 20 and detachably-provided disposable containers 22 are disposed. Therefore, while achieving the downsizing of the apparatus, the containers to be used can be selected in accordance with the test items in such a manner that the fixed containers 21 are used as high-accuracy containers to be cleaned and reused and the disposable containers 22 are used as low-cost disposable containers.
    • 提供了一种能够在不增加设备尺寸的情况下以高精度和低成本测试多个项目的自动分析装置。 具有包括测光机构70和流量分析机构40a,40b的多个项目的测试机构的自动分析装置1设置有公共盘(反应和预处理盘)20。在普通盘20中,固定容器21固定 配置在普通盘20上,可拆卸地设置一次性容器22。 因此,在实现装置的小型化的同时,可以根据试验项目来选择要使用的容器,使得固定容器21用作待清洁和重复使用的高精度容器,并且一次性容器22 被用作低成本的一次性容器。
    • 4. 发明申请
    • AUTOMATIC ANALYSIS APPARATUS
    • 自动分析仪
    • US20120048036A1
    • 2012-03-01
    • US13262671
    • 2010-04-08
    • Tomonori MimuraAkihisa MakinoSakuichiro Adachi
    • Tomonori MimuraAkihisa MakinoSakuichiro Adachi
    • G01N1/22
    • G01N35/025G01N35/0092
    • An automatic analysis apparatus that is capable of aligning the timing of sample dispensing and efficiently carrying out tests of a plurality of items. An intermediate disk (disk) is set so that an A-cycle for carrying out an operation for pretreatment and B-cycles for carrying out operations for dispensing a sample to a reaction disk and a flow analysis mechanism serving as test mechanisms are combined to use n-units of the B-cycles as a dispensing operation cycle time period of the sample. Therefore, the timing of sampling can be efficiently aligned so that the test of an item having a short analysis cycle can be carried out during the test of an item having a long analysis cycle, and so that the tests of an item having a large number of requests can be carried out during the test of the item having a small number of requests.
    • 一种自动分析装置,其能够对准样品分配的定时并且有效地进行多个项目的测试。 中间盘(盘)被设置为使得用于执行用于预处理的操作的A循环和用于将用于将样品分配到反应盘的操作的B循环和用作测试机构的流量分析机构组合使用 B个循环的n个单位作为样品的分配操作循环时间段。 因此,可以有效地对准采样的定时,使得在具有长分析周期的项目的测试期间可以执行具有短分析周期的项目的测试,并且使得具有大数量的项目的测试 可以在具有少量请求的项目的测试期间执行请求。
    • 5. 发明申请
    • AUTOMATIC ANALYSIS DEVICE AND DISPENSING DEVICE
    • 自动分析装置和分配装置
    • US20120020838A1
    • 2012-01-26
    • US13263454
    • 2010-04-08
    • Tomonori MimuraAkihisa MakinoSakuichiro Adachi
    • Tomonori MimuraAkihisa MakinoSakuichiro Adachi
    • G01N33/50
    • G01N35/025G01N2035/0453
    • An automatic analysis device 1a includes: an intermediate disk (intermediate unit) 20 on which a disposable container (intermediate container) 21 for carrying out a pretreatment by pretreatment liquid for a sample dispensed from a sample container 11 or a reaction with a reagent is arranged; a reaction disk (main analysis unit) 60 for carrying out a test of an item having a relatively large number of test requests, on which a reaction vessel 61 for carrying out a reaction of a reagent with the sample obtained after the pretreatment is arranged; and flow-based analysis mechanisms (sub analysis units) 30a to 30c for carrying out a test for the sample obtained after the reaction with the reagent in the disposable container 21, which is the item having a relatively small number of test requests.
    • 自动分析装置1a包括:中间盘(中间单元)20,其上设置有用于对从样品容器11分配的样品的预处理液进行预处理或与试剂反应的一次性容器(中间容器)21 ; 反应盘(主分析单元)60,用于执行具有相对较多测试请求的项目的测试,其上布置用于进行试剂与预处理之后获得的样品的反应的反应容器61; 以及用于对作为具有相对少的测试要求的项目的一次性容器21中的试剂进行反应后获得的样品进行试验的基于流的分析机构(子分析单元)30a至30c。
    • 9. 发明授权
    • Sample analyzer
    • 样品分析仪
    • US07342662B2
    • 2008-03-11
    • US11132291
    • 2005-05-19
    • Kunio HaradaSakuichiro AdachiHideo EnokiHironobu YamakawaTomonori Mimura
    • Kunio HaradaSakuichiro AdachiHideo EnokiHironobu YamakawaTomonori Mimura
    • G01N21/00
    • G01N21/3151G01N21/5907
    • The adverse effect on measurement accuracy brought about by the transmission of light beams through portions of a liquid sample with different concentrations, i.e., a concentration distribution in the vertical direction of a container, is prevented by using semiconductor light sources of two different types with different wavelengths. The semiconductor light sources (2, 4) of two different types are housed in the same package (5) such that a detector (9) can capture the light beams emitted by the light sources after their optical axes have intersected with one another. The multiple light beams can be thus caused to pass through portions with substantially the same concentration and therefore can be detected without being influenced by the difference in concentration of the sample in the container.
    • 通过使用具有不同浓度的液体样品的一部分(即,容器的垂直方向上的浓度分布),通过使用具有不同浓度的两种不同类型的半导体光源来传输光束所产生的对测量精度的不利影响 波长。 两种不同类型的半导体光源(2,4)被容纳在相同的封装(5)中,使得检测器(9)在光轴彼此相交之后能够捕获由光源发射的光束。 因此,可以使多个光束通过具有基本相同浓度的部分,因此可以不受样品在容器中的浓度差的影响而被检测。