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    • 1. 发明授权
    • Analysis apparatus and analysis method
    • 分析仪器及分析方法
    • US08721859B2
    • 2014-05-13
    • US13427037
    • 2012-03-22
    • Yasunori ShirakiDaisuke MatsumotoYusuke NakayamaGenki Adachi
    • Yasunori ShirakiDaisuke MatsumotoYusuke NakayamaGenki Adachi
    • G01N27/447B01D57/02C07K1/26G01N27/403
    • G01N27/44708B01D57/02G01N27/44713G01N27/44721G01N27/44791
    • An analysis apparatus is an apparatus that performs electrophoresis using a microchip provided with a channel. The analysis apparatus includes a cooling unit (an electron cooling element and a driving circuit) that cools the microchip, a voltage application unit (electrodes and a power supply circuit) that applies voltage to a buffer solution filled in the channel of the microchip, an optical analysis unit (a light source, a light receiving element, and an analysis unit) that conducts, through the microchip, optical analysis of a sample introduced in the channel, and a control unit that controls the cooling unit, the voltage application unit, and the optical analysis unit. The control unit causes the cooling unit to start cooling the microchip, and after the microchip has been cooled, causes the voltage application unit and the optical analysis unit to operate.
    • 分析装置是使用设置有通道的微芯片进行电泳的装置。 分析装置包括冷却微芯片的冷却单元(电子冷却元件和驱动电路),向填充在微芯片的通道中的缓冲溶液施加电压的电压施加单元(电极和电源电路), 光学分析单元(光源,光接收元件和分析单元),其通过微芯片对通道中引入的样品进行光学分析;以及控制单元,其控制冷却单元,电压施加单元, 和光学分析单元。 控制单元使冷却单元开始冷却微芯片,并且在微芯片冷却之后,使电压施加单元和光学分析单元工作。
    • 4. 发明申请
    • Analysis Apparatus and Analysis Method
    • 分析仪器及分析方法
    • US20120241322A1
    • 2012-09-27
    • US13427037
    • 2012-03-22
    • Yasunori ShirakiDaisuke MatsumotoYusuke NakayamaGenki Adachi
    • Yasunori ShirakiDaisuke MatsumotoYusuke NakayamaGenki Adachi
    • G01N27/26G01N27/453
    • G01N27/44708B01D57/02G01N27/44713G01N27/44721G01N27/44791
    • An analysis apparatus is an apparatus that performs electrophoresis using a microchip provided with a channel. The analysis apparatus includes a cooling unit (an electron cooling element and a driving circuit) that cools the microchip, a voltage application unit (electrodes and a power supply circuit) that applies voltage to a buffer solution filled in the channel of the microchip, an optical analysis unit (a light source, a light receiving element, and an analysis unit) that conducts, through the microchip, optical analysis of a sample introduced in the channel, and a control unit that controls the cooling unit, the voltage application unit, and the optical analysis unit. The control unit causes the cooling unit to start cooling the microchip, and after the microchip has been cooled, causes the voltage application unit and the optical analysis unit to operate.
    • 分析装置是使用设置有通道的微芯片进行电泳的装置。 分析装置包括冷却微芯片的冷却单元(电子冷却元件和驱动电路),向填充在微芯片的通道中的缓冲溶液施加电压的电压施加单元(电极和电源电路), 光学分析单元(光源,光接收元件和分析单元),其通过微芯片对通道中引入的样品进行光学分析;以及控制单元,其控制冷却单元,电压施加单元, 和光学分析单元。 控制单元使冷却单元开始冷却微芯片,并且在微芯片冷却之后,使电压施加单元和光学分析单元工作。
    • 7. 发明申请
    • SAMPLE ANALYSIS APPARATUS AND SAMPLE ANALYSIS METHOD
    • 样品分析装置和样品分析方法
    • US20120021451A1
    • 2012-01-26
    • US13187151
    • 2011-07-20
    • Daisuke MatsumotoYusuke Nakayama
    • Daisuke MatsumotoYusuke Nakayama
    • C12Q1/02C12M1/00
    • G01N27/44791
    • An analysis apparatus includes a plurality of separation channels, a detector, and a control unit. In each separation channel, a particular component contained in a sample is separated from other components. The detector detects the separated particular component. The control unit controls an analysis step and a preprocessing step. The analysis step includes a separation step of performing the separation and a detection step of performing the detection in each separation channel. The preprocessing step is performed to put each separation channel into a state in which it can perform the analysis step. The control unit simultaneously carries out at least parts of the preprocessing steps of at least two of the plurality of separation channels.
    • 分析装置包括多个分离通道,检测器和控制单元。 在每个分离通道中,包含在样品中的特定组分与其它组分分离。 检测器检测分离的特定组件。 控制单元控制分析步骤和预处理步骤。 分析步骤包括执行分离的分离步骤和在每个分离通道中执行检测的检测步骤。 执行预处理步骤以使每个分离通道进入其可以执行分析步骤的状态。 控制单元同时执行多个分离通道中的至少两个的预处理步骤的至少一部分。
    • 9. 发明申请
    • FUEL INJECTION CONTROL SYSTEM OF AN INTERNAL COMBUSTION ENGINE
    • 内燃机燃油喷射控制系统
    • US20140033687A1
    • 2014-02-06
    • US14111428
    • 2011-04-13
    • Yusuke NakayamaToru KidokoroKenji Sakurai
    • Yusuke NakayamaToru KidokoroKenji Sakurai
    • F01N3/18
    • F01N3/18F01N3/0814F01N3/0842F01N3/101F01N13/009F02D19/105Y02T10/22Y02T10/36
    • The present invention has its object to provide a technique which can eliminate HC poisoning of an exhaust gas purification catalyst in a suitable manner in a fuel injection control system of an internal combustion engine which can use a liquid fuel and a gas fuel. In order to achieve this object, the present invention is constructed such that in the fuel injection control system of an internal combustion engine capable of using a liquid fuel and a gas fuel, when HC poisoning of the exhaust gas purification catalyst has occurred, HC poisoning is intended to be eliminated by causing the internal combustion engine to operate by the use of the gas fuel if the temperature of the exhaust gas purification catalyst is less than a specified value, whereas the elimination of HC poisoning is intended by causing the internal combustion engine to operate by the use of the liquid fuel if the temperature of an exhaust gas purification device is not less than the specified value.
    • 本发明的目的是提供一种能够以能够使用液体燃料和气体燃料的内燃机的燃料喷射控制系统中适当的方式消除排气净化催化剂的HC中毒的技术。 为了实现该目的,本发明构成为在能够使用液体燃料和气体燃料的内燃机的燃料喷射控制系统中,在已经发生排气净化催化剂的HC中毒的情况下,HC中毒 如果排气净化催化剂的温度小于规定值,则通过使用燃气燃料来使内燃机运转,除去HC中毒的目的是通过使内燃机 如果废气净化装置的温度不小于规定值,则通过使用液体燃料进行操作。