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    • 2. 发明授权
    • Optical measuring apparatus and specimen discriminating and dispensing apparatus
    • 光学测量装置和试样识别和分配装置
    • US09541489B2
    • 2017-01-10
    • US13176781
    • 2011-07-06
    • Ken TsukiiToru TakahashiJie Xu
    • Ken TsukiiToru TakahashiJie Xu
    • G01F7/00G01N15/14G01F1/708G01F15/07
    • G01N15/14G01F1/7086G01F15/07G01N2015/149
    • The invention provides an optical measuring apparatus having a plurality of measuring sections each having a light irradiating section for irradiating light to specimens and a light receiving section for receiving optical data acquired by irradiating the light to the specimens and a flow rate calculating section for calculating flow rate values of the specimens based on a difference of measured times of the optical data measured by the plurality of measuring sections with respect to the specimens and a distance between the plurality of measuring sections. The optical measuring apparatus measures the optical data of the specimens by irradiating light to the specimens, i.e., the objects to be measured, dispersed within a sample fluid flowing through a flow passage. The optical measuring apparatus further includes a flow rate graph generating section for generating flow rate graph data in which the values of flow rate of the specimens calculated by the flow rate calculating section are arrayed in order of calculation in time-series manner and for outputting the generated flow rate graph data to a displaying section.
    • 本发明提供一种光学测量装置,具有多个测量部分,每个测量部分具有用于向样本照射光的光照射部分和用于接收通过向样品照射光而获得的光学数据的光接收部分和用于计算流量的流量计算部分 基于由多个测量部分测量的光学数据相对于样本的测量次数与多个测量部分之间的距离的差异,样本的速率值。 光学测量装置通过将光照射到流过流动通道的样品流体中的样品(即被测量物体)上来测量样品的光学数据。 光学测量装置还包括:流量图生成部,其生成流量图数据,其中由流量计算部计算出的样本的流量值按时间顺序排列的顺序排列,并输出 生成流量图数据到显示部分。
    • 4. 发明授权
    • Method, system and apparatus for providing access mode selection to multimode terminal
    • 用于向多模终端提供接入模式选择的方法,系统和装置
    • US08699419B2
    • 2014-04-15
    • US13270935
    • 2011-10-11
    • Dongming ZhuJie XuLi Wen
    • Dongming ZhuJie XuLi Wen
    • H04W4/00
    • H04W48/18H04L29/12188H04L61/1588H04L65/1006H04L65/1016H04L65/1073H04W48/08H04W60/00H04W76/10H04W88/06
    • A method, system and apparatus for providing access mode selection to multimode terminal are disclosed. After selecting an access mode according to a certain policy, a routing decision entity correspondingly instructs a routing execution entity to perform a call connection in the selected access mode. The method for providing access mode selection to multimode terminal includes the following steps: (1) when establishing a registration connection, a terminal notifies related information of a current access network type to a network side; and (2) when performing a call connection to a called party, a routing decision entity on the network side selects the access mode and correspondingly instructs a routing execution entity to perform the call connection according to the related information and the selected access mode.
    • 公开了一种用于向多模终端提供接入模式选择的方法,系统和装置。 在根据特定策略选择访问模式之后,路由决策实体相应地指示路由执行实体在所选择的访问模式中执行呼叫连接。 向多模终端提供接入模式选择的方法包括以下步骤:(1)当建立注册连接时,终端向网络侧通知当前接入网络类型的相关信息; 和(2)当对被叫方进行呼叫连接时,网络侧的路由选择实体选择接入方式,并根据相关信息和选择的接入方式相应地指示路由执行实体执行呼叫连接。
    • 5. 发明授权
    • Methods of separating, identifying and dispensing specimen and device therefor, and analyzing device method
    • 分离,识别和分配样品及其装置的方法,以及分析装置方法
    • US08264674B2
    • 2012-09-11
    • US11587210
    • 2005-04-25
    • Toru TakahashiKen TsukiiJie Xu
    • Toru TakahashiKen TsukiiJie Xu
    • G01N23/00
    • G01N15/1459B01F5/0057B01F11/0074B07C5/00G01N1/286G01N15/1427G01N15/1436G01N2015/1075G01N2035/1062
    • [PROBLEMS] A separation unit can confirms a separation state, a detection unit enhances a lighting efficiency and a light reception sensitivity, and a dispensing unit ensures the normal state of a specimen. [MEANS FOR SOLVING PROBLEMS] A specimen separation device characterized by comprising a container for storing a specimen, a nozzle for sucking and ejecting the specimen from the container, a nozzle operating means for moving the nozzle vertically and laterally, and a nozzle controlling means for controlling the suction force and ejection force of the nozzle. A specimen identification device comprising a nozzle for sucking a specimen from a container storing the specimen, a flow path for allowing the specimen to flow therethrough, and a measuring unit having a monitoring light lighting unit and a light receiving unit for observing (monitoring) the specimen that are installed in a flow path, characterized in that the above nozzle, the flow path and the measuring unit are formed in an integrated structure.
    • [问题]分离单元可以确认分离状态,检测单元提高照明效率和光接收灵敏度,并且分配单元确保样本的正常状态。 用于解决问题的手段一种试样分离装置,其特征在于,包括容纳容器的容器,用于从容器吸取和喷射试样的喷嘴,用于使喷嘴垂直和侧向移动的喷嘴操作装置,以及用于 控制喷嘴的吸力和喷射力。 一种样本识别装置,包括:用于从容纳所述样本的容器吸取试样的喷嘴,用于使所述试样流过的流路;以及具有监视用光照射单元的测量单元和观察(监视) 试样,其安装在流路中,其特征在于,上述喷嘴,流路和测量单元形成为一体的结构。
    • 6. 发明申请
    • OPTICAL INFORMATION ANALYZER AND OPTICAL INFORMATION ANALYSIS METHOD
    • 光信息分析仪和光信息分析方法
    • US20120154804A1
    • 2012-06-21
    • US13337848
    • 2011-12-27
    • Ken TSUKIIKenichi KimuraToru TakahashiJie Xu
    • Ken TSUKIIKenichi KimuraToru TakahashiJie Xu
    • G01N21/49
    • G01N15/1434G01N2015/1452
    • An optical information analyzer (10) includes a light emitting unit (30) that emits light (excitation light) (L0) to a sample (S), a transmission light receiving unit (50) that receives transmission light (L1), which is the excitation light passing through the sample (S), and detects the received transmission light as a transmission light signal (SG1), scattered light/fluorescence receiving units (60) and (70) that are provided at a plurality of positions, receive side scattered light/fluorescence components (L2) and (L3) from the sample (S), and detect the received side scattered light/fluorescence components as scattered light/fluorescence signals (SG2) and (SG3), and an analyzing unit (90) that measures the optical information of the sample (S) on the basis of the detected scattered light/fluorescence signals (SG2) and (SG3) and the detected transmission light signal (SG1) and analyzes the sample (S) on the basis of the measured optical information.
    • 光信息分析装置(10)包括对样本(S)发光(激发光)(L0)的发光单元(30),接收透射光(L1)的透射光接收单元(50) 通过样品(S)的激发光,并且检测作为透射光信号(SG1)的接收的透射光,设置在多个位置的散射光/荧光接收单元(60)和(70),接收侧 检测来自样品(S)的散射光/荧光成分(L2)和(L3),并检测作为散射光/荧光信号(SG2)和(SG3)的接收侧散射光/荧光成分,以及分析单元(90) 根据检测到的散射光/荧光信号(SG2)和(SG3)和检测到的透射光信号(SG1)来测量样品(S)的光学信息,并基于样品(S) 测量光信息。
    • 8. 发明申请
    • OPTICAL INFORMATION ANALYZING DEVICE AND OPTICAL INFORMATION ANALYZING METHOD
    • 光信息分析装置和光信息分析方法
    • US20120092667A1
    • 2012-04-19
    • US13335997
    • 2011-12-23
    • Ken TSUKIIKenichi KimuraToru TakahashiJie Xu
    • Ken TSUKIIKenichi KimuraToru TakahashiJie Xu
    • G01N21/59G01N21/64G01N21/53
    • G01N15/1434G01N2015/1452
    • There are provided an optical information analyzing device and an optical information analyzing method in which a light receiving unit for receiving transmitted light is provided at a position directly facing an irradiating unit and which may increase the sensitivity of the received transmitted light by adjusting the position of a sample flow relative to a measurement region in a flow passage and measure the optical information on specimens with a small variation. An optical information analyzing device includes an irradiating unit that irradiates irradiation light to specimens, a transmitted light receiving unit that receives transmitted light and detects the transmitted light as a transmitted light signal, a scattering/fluorescent light receiving unit that receives lateral scattering light and fluorescent light and detects the lateral scattering light and the fluorescent light as a scattering/fluorescent light signal, a nozzle position adjusting mechanism that adjusts the position of an end portion of an introduction nozzle so as to align the position of the end portion of the introduction nozzle with the transmitted light receiving unit and the irradiating unit, and an analyzing unit that measures the optical information on the specimen on the basis of the detected transmitted light signal and the detected scattering/fluorescent light signal and analyzes the specimen.
    • 提供了一种光信息分析装置和光信息分析方法,其中用于接收透射光的光接收单元设置在直接面向照射单元的位置,并且可以通过调节所接收的透射光的位置来增加所接收的透射光的灵敏度 相对于流动通道中的测量区域的样品流,并且测量具有小变化的样品的光学信息。 光学信息分析装置包括:照射照射光的照射单元,接收透射光的透射光接收单元,并将透射光作为透射光信号进行检测;散射/荧光受光单元,其接收横向散射光和荧光 照射并检测横向散射光和荧光,作为散射/荧光信号;喷嘴位置调节机构,其调节引入喷嘴的端部的位置,以便对准引入喷嘴的端部的位置 以及分析单元,其基于检测到的透射光信号和检测到的散射/荧光信号来测量样本上的光学信息,并分析样本。
    • 10. 发明申请
    • OPTICAL MEASURING APPARATUS AND SPECIMEN DISCRIMINATING AND DISPENSING APPARATUS
    • 光学测量装置和样本分辨和分配装置
    • US20120004864A1
    • 2012-01-05
    • US13176781
    • 2011-07-06
    • Ken TsukiiToru TakahashiJie Xu
    • Ken TsukiiToru TakahashiJie Xu
    • G06F19/00
    • G01N15/14G01F1/7086G01F15/07G01N2015/149
    • The invention provides an optical measuring apparatus having a plurality of measuring sections each having a light irradiating section for irradiating light to specimens and a light receiving section for receiving optical data acquired by irradiating the light to the specimens and a flow rate calculating section for calculating flow rate values of the specimens based on a difference of measured times of the optical data measured by the plurality of measuring sections with respect to the specimens and a distance between the plurality of measuring sections. The optical measuring apparatus measures the optical data of the specimens by irradiating light to the specimens, i.e., the objects to be measured, dispersed within a sample fluid flowing through a flow passage. The optical measuring apparatus further includes a flow rate graph generating section for generating flow rate graph data in which the values of flow rate of the specimens calculated by the flow rate calculating section are arrayed in order of calculation in time-series manner and for outputting the generated flow rate graph data to a displaying section.
    • 本发明提供一种光学测量装置,具有多个测量部分,每个测量部分具有用于向样本照射光的光照射部分和用于接收通过向样品照射光而获得的光学数据的光接收部分和用于计算流量的流量计算部分 基于由多个测量部分测量的光学数据相对于样本的测量次数与多个测量部分之间的距离的差异,样本的速率值。 光学测量装置通过将光照射到流过流动通道的样品流体中的样品(即被测量物体)上来测量样品的光学数据。 光学测量装置还包括:流量图生成部,其生成流量图数据,其中由流量计算部计算出的样本的流量值按时间顺序排列的顺序排列,并输出 生成流量图数据到显示部分。