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    • 2. 发明申请
    • Quantitative analyzing method and quantitative analyzer using sensor
    • 定量分析方法和定量分析仪采用传感器
    • US20050258034A1
    • 2005-11-24
    • US10466453
    • 2002-01-15
    • Kazuo IketakiYoichi Inoue
    • Kazuo IketakiYoichi Inoue
    • G01N33/487G01N27/26
    • C12Q1/006G01N27/3274
    • A quantitative analyzing method is provided for electrochemically measuring the concentration of a substance in a sample liquid using a sensor including a reagent layer (30) which contains a reagent for reacting with the substance and to which (30) the sample liquid is introduced, and a first electrode (22) and a second electrode (23) for applying a voltage to the reagent layer (30). The method includes a current measuring step for applying a voltage across the first electrode (22) and the second electrode (23) for measuring current flowing between the first and the second electrodes (22,23), a parameter calculating step for calculating a parameter based on the measured current, and a determining step for determining a state of the sample liquid introduced to the reagent layer (30) based on the parameter and at least one predetermined constant.
    • 提供了一种定量分析方法,用于使用包括试剂层(30)的传感器电化学测量样品液体中的物质的浓度,所述试剂层包含用于与所述物质反应的试剂,并且(30)所述样品液体被引入所述试剂层, 用于向试剂层(30)施加电压的第一电极(22)和第二电极(23)。 该方法包括电流测量步骤,用于施加跨越第一电极(22)和第二电极(23)的电压,用于测量在第一和第二电极(22,23)之间流动的电流;参数计算步骤,用于计算参数 基于所测量的电流,以及确定步骤,用于基于所述参数和至少一个预定常数来确定引入所述试剂层(30)的样品液体的状态。
    • 4. 发明授权
    • Quantitative analyzing method and quantitative analyzer using sensor
    • 定量分析方法和定量分析仪采用传感器
    • US07351323B2
    • 2008-04-01
    • US10466453
    • 2002-01-15
    • Kazuo IketakiYoichi Inoue
    • Kazuo IketakiYoichi Inoue
    • G01N27/327
    • C12Q1/006G01N27/3274
    • A quantitative analyzing method is provided for electrochemically measuring the concentration of a substance in a sample liquid using a sensor including a reagent layer (30) which contains a reagent for reacting with the substance and to which (30) the sample liquid is introduced, and a first electrode (22) and a second electrode (23) for applying a voltage to the reagent layer (30). The method includes a current measuring step for applying a voltage across the first electrode (22) and the second electrode (23) for measuring current flowing between the first and the second electrodes (22,23), a parameter calculating step for calculating a parameter based on the measured current, and a determining step for determining a state of the sample liquid introduced to the reagent layer (30) based on the parameter and at least one predetermined constant.
    • 提供了一种定量分析方法,用于使用包括试剂层(30)的传感器电化学测量样品液体中的物质的浓度,所述试剂层包含用于与所述物质反应的试剂,并且(30)所述样品液体被引入所述试剂层, 用于向试剂层(30)施加电压的第一电极(22)和第二电极(23)。 该方法包括电流测量步骤,用于施加跨越第一电极(22)和第二电极(23)的电压,用于测量在第一和第二电极(22,23)之间流动的电流;参数计算步骤,用于计算参数 基于所测量的电流,以及确定步骤,用于基于所述参数和至少一个预定常数来确定引入所述试剂层(30)的样品液体的状态。
    • 8. 发明授权
    • Image processing device suitable for obtaining the volume and center of
gravity of a three-dimensional binary image
    • 适用于获得三维二值图像的体积和重心的图像处理装置
    • US4975973A
    • 1990-12-04
    • US198442
    • 1988-05-25
    • Akira KasanoYoichi Inoue
    • Akira KasanoYoichi Inoue
    • G06T5/40G06T7/60
    • G06T7/606G06T7/602G06T2207/10081G06T2207/20021
    • A first memory stores a divided three-dimensional binary image as image data j of p bits. A second memory, equal to the first memory in size, stores data k of q bits, representing the section number of a corresponding memory section of the first memory. A histogram computing circuit concatenates data j and data k and obtains a histogram for the concatenated data. A computing unit computes a marginal distribution of the three-dimensional image on the basis of the histogram. A data conversion unit converts the p bit data to a first data image. An adder unit obtains from the first image a second image representing the marginal distribution P(x,y). The computing unit computes a marginal distribution P(x) and a marginal distribution P(y) from the second image, and also computes the volume and center of gravity of the three-dimensional binary image.
    • 第一存储器将分割的三维二进制图像存储为p位的图像数据j。 等于第一存储器大小的第二存储器存储q位的数据k,表示第一存储器的相应存储器部分的段号。 直方图计算电路连接数据j和数据k,并获得连接数据的直方图。 计算单元基于直方图计算三维图像的边际分布。 数据转换单元将p位数据转换为第一数据图像。 加法器单元从第一图像获得表示边际分布P(x,y)的第二图像。 计算单元从第二图像计算边际分布P(x)和边际分布P(y),并且还计算三维二值图像的体积和重心。
    • 9. 发明授权
    • Hot isostatic pressing apparatus
    • 热等静压装置
    • US4629412A
    • 1986-12-16
    • US639065
    • 1984-08-09
    • Yoichi InoueTakahiko Ishii
    • Yoichi InoueTakahiko Ishii
    • B22F3/14B22F3/15B30B11/00C04B35/645F27B17/00B22F3/12
    • B22F3/15B30B11/002Y10S425/026
    • A hot isostatic pressing apparatus having a high pressure vessel, a heat insulating layer and a heater disposed inside the heat insulating layer, the heat insulating layer and the heater being disposed within a high pressure chamber defined by upper and lower covers. The heat insulating layer is composed of at least two inner and outer inverted cup-like casings, the outer casing being metallic and having a hermetic structure and the inner casing having a hermetic structure. A passage is formed in the upper surface of the outer casing and a valve capable of being opened and closed is provided therein. Further, a mechanism for opening and closing the valve is mounted on the upper cover, and a gas passage is formed in the lower portion of the het insulating layer. The above arrangement creates a convection of gas in the cooling step after the HIP treatment whereby a remarkable improvement can be attained in cooling efficiency, cooling time and productivity.
    • 一种具有高压容器,绝热层和布置在隔热层内部的加热器的热等静压装置,隔热层和加热器设置在由上盖和下盖限定的高压室内。 绝热层由至少两个内部和外部倒置的杯状壳体组成,外部壳体是金属的并且具有密封结构,并且内部壳体具有密封结构。 在外壳的上表面形成通道,并且在其中设置能够打开和关闭的阀。 此外,在上盖上安装有用于打开和关闭阀的机构,并且在绝缘层的下部形成气体通道。 上述结构在HIP处理之后的冷却步骤中产生气体的对流,从而在冷却效率,冷却时间和生产率方面可以获得显着的改善。