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    • 41. 发明授权
    • Braking device and braking method
    • 制动装置和制动方法
    • US08838355B2
    • 2014-09-16
    • US13520815
    • 2011-01-06
    • Yuki Ito
    • Yuki Ito
    • B60T8/17B60L7/24B60T17/22B60T8/88B60T8/40B60L3/00B60T8/90
    • B60T8/885B60L3/0038B60L3/0076B60T8/4018B60T8/4081B60T8/90B60T2270/406
    • An operation quantity detector detects an operation quantity. Hydraulic passage systems provide connection between hydraulic chambers of a tandem type master cylinder and wheel cylinders. A hydraulic pressure source in the hydraulic passages can pressurize the hydraulic passages based on the operation quantity. Cutoff valves each is installed in each of the hydraulic passages, between the master cylinder and the hydraulic pressure source. The hydraulic pressure detectors detect hydraulic pressures of the hydraulic passages. In the opening command state, a first mutual diagnosis based on the hydraulic pressures and the operation quantity and a second mutual diagnosis based on the hydraulic pressures are performed. In the closing command state, the first and second mutual diagnoses are performed. A failure is detected in the cutoff valves and the hydraulic pressure detecting units based on results of the first and second mutual diagnoses in the opening closing command states.
    • 操作量检测器检测操作量。 液压通道系统提供串联式主缸和轮缸的液压室之间的连接。 液压通道中的液压源可以基于操作量对液压通道加压。 截止阀各自安装在主缸和液压源之间的每个液压通道中。 液压检测器检测液压通道的液压。 在打开指令状态下,执行基于液压和操作量的第一相互诊断以及基于液压的第二相互诊断。 在关闭命令状态下,执行第一和第二相互诊断。 基于打开关闭指令状态下的第一和第二相互诊断的结果,在截止阀和液压检测单元中检测到故障。
    • 44. 发明授权
    • Method for measuring substrate concentration and apparatus for measuring substrate concentration
    • 测量底物浓度的方法和测量底物浓度的装置
    • US08535510B2
    • 2013-09-17
    • US12450775
    • 2008-04-15
    • Tatsuo KamataTakeshi TakagiYuki Ito
    • Tatsuo KamataTakeshi TakagiYuki Ito
    • G01N27/327
    • C12Q1/001A61B5/14532A61B5/1486A61B5/1495A61B2560/0223
    • This invention provides a substrate concentration measuring method for measuring a concentration of a substrate included in a specimen based on an output for measurement from an enzyme electrode when the enzyme electrode and the substrate are reacted with each other, the substrate concentration is calculated using an output for correction from the enzyme electrode obtained when a reference solution whose substrate concentration is known and the enzyme electrode are reacted with each other before or after the enzyme electrode and the substrate are reacted with each other. For example, the output for correction is measured by each specimen. In this method, the substrate concentration may be calculated using the output for correction for the specimen to be measured and an output for correction corresponding to the at least one other specimen and measured prior to the output for correction.
    • 本发明提供一种基板浓度测量方法,用于当酶电极和基板彼此反应时,基于酶电极的测量输出测量样品中包含的基板的浓度,基板浓度使用输出 用于当酶底物浓度已知的参比溶液和酶电极在酶电极和底物之间彼此反应之前彼此反应的酶电极获得的酶电极校正。 例如,用于校正的输出由每个样本测量。 在该方法中,可以使用待测试样本的校正输出和与至少一个其他样本相对应的校正输出并在校正输出之前测量来计算衬底浓度。
    • 46. 发明申请
    • Image Display Apparatus and Control Method
    • 图像显示装置及控制方法
    • US20110153799A1
    • 2011-06-23
    • US12968971
    • 2010-12-15
    • Yuki Ito
    • Yuki Ito
    • G06F15/173
    • G06F13/124
    • A communication unit that communicates with the information terminal; an image display unit that forms and displays an image; a control unit that controls the image display unit; a storage unit that stores model data defining a model of web screen information for instructing the control of the image display unit; and a generation unit that generates the web screen information that can be displayed in the information terminal by selecting the model data stored in the storage unit, and configuring, in the model indicated by the model data, an instruction unit for instructing a control item that controls the display unit. The communication unit transmits the web screen information generated by the generation unit to the information terminal, and the control unit controls the control item of the image display unit based on an instruction signal transmitted as a result of specifying the instruction unit of the web screen information displayed in the information terminal.
    • 与信息终端通信的通信单元; 形成和显示图像的图像显示单元; 控制单元,其控制图像显示单元; 存储单元,其存储限定用于指示图像显示单元的控制的web屏幕信息的模型的模型数据; 以及生成单元,其通过选择存储在存储单元中的模型数据来生成可以在信息终端中显示的网络画面信息,并且在由模型数据指示的模型中配置指示单元,用于指示控制项, 控制显示单元。 通信单元将由生成单元生成的网络画面信息发送到信息终端,控制单元基于作为指定网页画面信息的指示单元的结果而发送的指示信号来控制图像显示单元的控制项目 显示在信息终端中。
    • 47. 发明申请
    • SUBSTRATE CONCENTRATION MEASUREMENT METHOD AND SUBSTRATE CONCENTRATION MEASUREMENT APPARATUS
    • 基板浓度测量方法和基板浓度测量装置
    • US20100299072A1
    • 2010-11-25
    • US12451085
    • 2008-04-25
    • Tatsuo KamataTakeshi TakagiYuki Ito
    • Tatsuo KamataTakeshi TakagiYuki Ito
    • G06F19/00G01N33/50
    • G01N27/3274G01N30/8606G01N33/5438G01N33/721G01N33/96G01N2030/146G01N2030/8411G01N2030/8822
    • This invention is a method for a substrate concentration measurement method including measuring a concentration of a substrate in a blood specimen containing hemoglobin. In the method, the substrate concentration is calculated by using a measurement value correlating with a substrate concentration influenced by hemoglobin, and a hemoglobin concentration or a value correlating with the hemoglobin concentration. A substrate concentration is calculated by correcting the measurement value Re correlating with the substrate concentration based on the following Formulae 1 and 2: [Formula 1] Corrected value=100×Re/V (%), wherein V (%) represents a value with respect to plasma (a ratio of a measurement value influenced by hemoglobin with respect to a measurement value obtained by measuring plasma), and Re represents the measurement value correlating with the substrate concentration influenced by hemoglobin; [Formula 2] Value with respect to plasma V (%)=(Vmax×Re)/(Km+Re)+B, wherein Vmax represents a value obtained by subtracting an intercept (B) from the value (V) with respect to plasma which is maintained constant even when the measurement value influenced by hemoglobin increases, Km represents a value of Re at which the value V (%) with respect to plasma becomes Vmax/2, and B represents a value (constant) of V (%) with respect to plasma when Re is 0.
    • 本发明是一种测定含有血红蛋白的血液标本中的基质浓度的基板浓度测定方法。 在该方法中,通过使用与受血红蛋白影响的底物浓度相关的测定值和血红蛋白浓度或与血红蛋白浓度相关的值来计算底物浓度。 通过基于以下公式1和2校正与底物浓度相关的测量值Re来计算底物浓度:[式1]校正值= 100×Re / V(%),其中V(%)表示与 对血浆的影响(由血红蛋白影响的测定值相对于通过测定血浆得到的测定值的比例),Re表示与由血红蛋白影响的底物浓度相关的测定值; [式2]相对于等离子体V(%)=(Vmax×Re)/(Km + Re)+ B的值,其中Vmax表示通过从相对于(V)的值(V)减去截距(B) 即使当受血红蛋白影响的测量值增加时,也保持恒定的等离子体,Km表示相对于等离子体的值V(%)为Vmax / 2的Re值,B表示V(%)的值(常数) )相对于等离子体。
    • 48. 发明申请
    • Method for preventing drag in vehicular brake system
    • 防止车辆制动系统阻力的方法
    • US20100084914A1
    • 2010-04-08
    • US12584828
    • 2009-09-11
    • Kunimichi HatanoYuki Ito
    • Kunimichi HatanoYuki Ito
    • B60T8/34
    • B60T8/4872
    • Systems and methods to prevent dragging of a fluid pressure type disk brake system are described herein. Brake fluid pressure generated by a master cylinder during a braking operation is transmitted to a wheel cylinder via a VSA system. The VSA system includes a low pressure accumulator and an out-valve disposed between the wheel cylinder and the low pressure accumulator. Temporarily opening the out-valve during a braking operation allows part of the brake fluid that would otherwise be supplied to the wheel cylinder to be supplied to the low pressure accumulator. After the braking operation by the driver is completed, brake fluid supplied to the wheel cylinder is returned to the master cylinder. Thus, a piston of the wheel cylinder is withdrawn by an extra amount corresponding to the amount of brake fluid supplied to the low pressure accumulator, thus reliably prevents disk pad dragging in the disk brake system.
    • 这里描述了防止液压式盘式制动系统拖动的系统和方法。 在制动操作期间由主缸产生的制动液压通过VSA系统传递到轮缸。 VSA系统包括低压蓄能器和设置在轮缸和低压蓄能器之间的出口阀。 在制动操作期间临时打开排气阀,否则将供给到轮缸的制动液的一部分供给低压蓄能器。 在驾驶员的制动操作完成之后,提供给轮缸的制动液返回主缸。 因此,轮缸的活塞通过与供给低压蓄能器的制动液量相对应的额外量而被拉出,从而可靠地防止盘片在盘式制动系统中的拖动。