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    • 5. 发明申请
    • MICRO-CHANNEL CHIP FOR ELECTROPHORESIS AND METHOD FOR ELECTROPHORESIS
    • 用于电泳的微通道芯片和电泳方法
    • US20110120867A1
    • 2011-05-26
    • US12674481
    • 2008-08-22
    • Yoshinori MishinaHisashi Hagiwara
    • Yoshinori MishinaHisashi Hagiwara
    • B01D57/02
    • G01N27/44791G01N27/44743
    • The micro-channel chip for electrophoresis of the present invention comprises a first substrate formed of a gas-permeable material and a second substrate formed of a gas-permeable or a gas-impermeable material, the first and the second substrate being glued together, the mating surface of either one of the first and second substrates having a sample-feeding channel having a port at both ends and an electrophoretic channel also having a port at both ends, the sample-feeding channel and the electrophoretic channel being allowed to communicate with each other via a narrower channel having a smaller cross-sectional area than those two channels. The micro-channel chip for electrophoresis of the present invention requires only one power source to perform electrophoresis and can use samples with minimum waste of their quantity.
    • 本发明的电泳用微通道芯片包括由透气性材料形成的第一基板和由透气性或气体不可渗透材料形成的第二基板,第一和第二基板被胶合在一起, 第一基板和第二基板中的任一个的配合表面具有在两端具有端口的采样馈送通道和在两端具有端口的电泳通道,允许采样馈送通道和电泳通道与每个 另一个通过具有比两个通道更小的横截面面积的较窄通道。 本发明的电泳用微通道芯片仅需要一个电源来进行电泳,并且可以以最少的数量浪费使用样品。
    • 7. 发明申请
    • ULTRASONOGRAPH
    • US20100312110A1
    • 2010-12-09
    • US12160447
    • 2007-01-10
    • Takao SuzukiHisashi HagiwaraMakoto KatoYoshinao Tan-naka
    • Takao SuzukiHisashi HagiwaraMakoto KatoYoshinao Tan-naka
    • A61B8/14
    • A61B8/0858A61B5/02007A61B5/021A61B8/13A61B8/485
    • An ultrasonic diagnostic apparatus according to the present invention includes: a transmitting section 102 driving an ultrasonic probe; a receiving section 103 receiving an ultrasonic echo, produced by getting an ultrasonic wave reflected by a subject, at the probe to generate a received signal; a tissue tracking section 105 for tracking the motion of each tissue of the subject based on the received signal and outputting location tracking information; a radius and wall thickness calculating section calculating the radius and wall thickness of the blood vessel; a tissue attribute value calculating section 108 calculating radial and circumferential elasticities of the vascular wall of the vessel based on information about the blood pressure of the subject provided externally, the tracking information, and the radius and wall thickness of the vessel; and a display section 107 presenting the radial and circumferential elasticities. While the transmitting section and the receiving section are transmitting or receiving the ultrasonic wave, the tissue attribute value calculating section calculates the radial elasticities one after another based on the tracking information and the information about the blood pressure, and the display section presents the radial elasticities. But while the transmission and reception of the ultrasonic waves are suspended, the tissue attribute value calculating section calculates the circumferential elasticity based on the tracking information, the information about the blood pressure, and the radius and wall thickness of the blood vessel and the display section presents the circumferential elasticities.
    • 根据本发明的超声波诊断装置包括:驱动超声波探头的发送部分102; 接收部103,其通过在被检测体上取得被检体反射的超声波而接收超声波回波,生成接收信号; 组织跟踪部分105,用于基于所接收的信号跟踪对象的每个组织的运动并输出位置跟踪信息; 计算血管的半径和壁厚的半径和壁厚计算部; 组织属性值计算部分108,根据关于外部提供的对象的血压,跟踪信息以及血管的半径和壁厚的信息,计算血管壁的血管壁的径向和周向弹性; 以及呈现径向和周向弹性的显示部分107。 当发送部分和接收部分正在发送或接收超声波时,组织属性值计算部分基于跟踪信息和关于血压的信息来一个接一个地计算径向弹性,并且显示部分呈现径向弹性 。 但是,在超声波的发送接收停止的情况下,组织属性值计算部根据跟踪信息,关于血压的信息以及血管的半径和壁厚以及显示部来计算周边弹性 呈现圆周弹性。