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    • 4. 发明授权
    • Electrophoresis apparatus
    • 电泳仪
    • US07118662B2
    • 2006-10-10
    • US10041597
    • 2002-01-10
    • Hironobu YamakawaRyo MiyakeYasuhiko SasakiAkira Koide
    • Hironobu YamakawaRyo MiyakeYasuhiko SasakiAkira Koide
    • G01N27/447G01N27/26
    • G01N27/44721G01N27/44791
    • The windows 5a, 5b are configured so that the thickness of the upper and lower parts of the substrate formed therein with the channels becomes thinner in these parts than in other parts. An air space is defined in the vicinity of the one side wall of the channel within a part where the first outgoing window 5a is formed, so as to serve as a window, and the second outgoing window 5b has a shape such as to be recessed inward from the one side wall of the planar plate 10, in comparison with the other part thereof. Further, the fluorescence transmission path 6b is also formed on opposite sides with air spaces. It is noted that a rod-like fiber or the like may be embedded in the planar plate 10 on the outgoing side of the planar plate 10 at the time of forming the separation channel 21 and the like.
    • 窗口5a,5b构造成使得在其中形成有通道的基板的上部和下部的厚度在这些部分比在其它部分中更薄。 在形成第一输出窗口5a的部分内的通道的一个侧壁的附近限定空气空间,以便用作窗口,并且第二出口窗口5b具有如下形状: 与平板10的一个侧壁向内凹入,与其他部分相比较。 此外,荧光传输路径6b也形成在具有空气空间的相对侧上。 注意,在形成分离通道21等时,可以在平板10的出口侧的平板10中嵌入棒状纤维等。
    • 5. 发明授权
    • Microorganism testing device
    • 微生物检测装置
    • US08409850B2
    • 2013-04-02
    • US11964154
    • 2007-12-26
    • Kei TakenakaYasuhiko SasakiRyo Miyake
    • Kei TakenakaYasuhiko SasakiRyo Miyake
    • C12M1/34C12M3/00
    • G01N21/6428G01N15/1484G01N2015/1486
    • A microorganism testing device includes a measurement chip having a specimen container; a reaction container for mixing a specimen and a dyeing reagent; a bacteria detection portion irradiated with excitation light; a detection liquid waste container a solution flow path which connects the specimen container, the reaction container and the bacteria detection portion, and ventilation ports which are connected to the specimen container, the reaction container and the detection liquid waste container, through a air flow path and is connected to a chip connecting tube. Bacteria are detected in the bacteria detection portion by switching of the states of the containers between a sealed state and a state open to the atmospheric pressure, by moving the specimen to the reaction container to mix and stir the specimen and the dyeing reagent, and by moving of the liquid mixture to the detection liquid waste container.
    • 微生物检测装置包括具有检体容器的测量片; 用于混合试样和染色试剂的反应容器; 用激发光照射的细菌检测部分; 检测用废液容器,将检体容器,反应容器和细菌检测部连接的溶液流路和通过空气流路连接到检体容器,反应容器和检测用废液容器的通气口 并连接到芯片连接管。 通过在密封状态和大气压开放状态之间切换容器的状态,通过将样品移动到反应容器中来混合并搅拌样品和染色试剂,并通过 将液体混合物移动到检测液体废物容器。
    • 7. 发明申请
    • Microorganism Separation Device
    • 微生物分离装置
    • US20080248562A1
    • 2008-10-09
    • US10586730
    • 2005-01-20
    • Tadashi SanoRyo MiyakeYasuhiko SasakiTatsuo SuminoKazuichi IsakaHajime Ikuta
    • Tadashi SanoRyo MiyakeYasuhiko SasakiTatsuo SuminoKazuichi IsakaHajime Ikuta
    • C12M1/00
    • G01N15/10G01N2015/0088
    • A microorganism separation device includes: sample solution supply means (30) for supplying a sample solution (40) stored within a sample solution reservoir (32) to a first flow path (12); a microorganism sensor (22) that is capable of detecting a monadelphous microorganism in the sample solution (40) that passes through the first flow path (12); a controller (24) that stops to supply the sample solution (40) to the first flow path (12) and discharges the detected microorganism together with the sample solution (40) from a termination side of the first flow path (12) on the basis of a detection result of the microorganism by the microorganism sensor (22); and an acceptor (52) that receives a droplet (28) of the sample solution (40) that is discharged from the termination side of the first flow path (12).
    • 微生物分离装置包括:样品溶液供给装置(30),用于将存储在样品溶液储存器(32)内的样品溶液(40)供应到第一流动路径(12); 微生物传感器(22),其能够检测通过所述第一流路(12)的所述样品溶液(40)中的单位微生物; 控制器(24),停止向第一流路(12)供应样品溶液(40),并将检测到的微生物与样品溶液(40)一起从第一流路(12)的终止侧排出到 微生物传感器(22)对微生物的检测结果的基础; 以及接收从第一流路(12)的终端侧排出的样品溶液(40)的液滴(28)的受体(52)。