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    • 4. 发明公开
    • FLOW CELL
    • 流动细胞
    • EP2226622A1
    • 2010-09-08
    • EP09705276.5
    • 2009-01-30
    • Nippon Telegraph and Telephone Corporation
    • MIURA, ToruHORIUCHI, TsutomuIWASAKI, YuzuruSEYAMA, Michiko
    • G01N21/05
    • G01N21/05B01L3/502707B01L3/50273B01L2300/069B01L2300/0816B01L2300/0887B01L2400/0406B01L2400/086F04B19/006G01N21/553G01N2021/0346G01N2021/056Y10T137/2224Y10T137/85978Y10T436/2575
    • A measurement fluidic channel (17) is formed at almost the center of a flow cell (1). In general, the measurement region of a measurement apparatus is set to focus on almost the center of a measurement chip. When the flow cell (1) is mounted in the measurement apparatus, the focus of the measurement region is positioned just above the measurement fluidic channel (17). The measurement apparatus can more reliably measure a sample solution flowing through the measurement fluidic channel (17). A suction pump (18) is formed in regions around the measurement fluidic channel (17). When the flow cell has the same planar shape as a conventional one, the amount of sample solution which can be supplied can be increased, compared to a conventional structure in which components are formed in line. The time during which a sample solution flows through the fluidic channel can be prolonged, the amount of sample solution can be increased, and the measurement time can also be prolonged. A sample solution flowing through the fluidic channel can be measured more reliably.
    • 测量流体通道(17)形成在流动池(1)的大致中心处。 通常,测量装置的测量区域被设定为几乎集中在测量芯片的中心。 当流通池(1)安装在测量装置中时,测量区域的焦点位于测量流体通道(17)的正上方。 测量设备可以更可靠地测量流过测量流体通道(17)的样本溶液。 抽吸泵(18)形成在测量流体通道(17)周围的区域中。 当流通池具有与传统流通池相同的平面形状时,与其中在线形成部件的传统结构相比,可以提供的样品溶液的量可以增加。 样品溶液流过流体通道的时间可以延长,样品溶液的量可以增加,测量时间也可以延长。 可以更可靠地测量流过流体通道的样品溶液。