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    • 2. 发明专利
    • Mixing device/method of fluid and mold construction
    • 混合装置/流体和模具结构的方法
    • JP2013139034A
    • 2013-07-18
    • JP2013030408
    • 2013-02-19
    • Nagoya Univ国立大学法人名古屋大学Nagoya Industrial Science Research Institute公益財団法人名古屋産業科学研究所
    • SHAMOTO EIJITOKESHI MANABUKACHI NORIMASABABA YOSHINOBUSAKAI YASUHIKOSUZUKI NORIKAZU
    • B01F5/00B01F3/08B01J19/00G01N37/00
    • PROBLEM TO BE SOLVED: To provide a fluid mixing device which is compact and inexpensive by use of a flow path of a single layer structure that can be molded by a mold.SOLUTION: In the fluid mixing device, two fluids are mixed by making at least two channels joined, at least two channels are formed from the same surface in the same direction in one microchip that composes the mixing device and is constituted of one channel accommodating one fluid and another channel accommodating another fluid. The mixing device is provided with a first channel part and a second channel part. In the first channel part, a position of a lowest part of one channel in a vertical direction perpendicular to a channel direction is lower than a position of a lowest part of another channel in a vertical direction. In the second channel part in a state after channel joining, a lowest part in a vertical direction of a part extended from one channel is located just under a lowest part of a part extended from another channel. The channel part immediately after joining and subsequent at lest one channel part respectively have different shapes of faces that are perpendicular to the channel direction.
    • 要解决的问题:提供一种通过使用可由模具成型的单层结构的流路而紧凑且便宜的流体混合装置。解决方案:在流体混合装置中,将两种流体混合在 连接了至少两个通道,在构成混合装置的一个微芯片中,从相同方向上的相同表面形成至少两个通道,并且由一个容纳一个流体的通道和另一个容纳另一个流体的通道构成。 混合装置设有第一通道部分和第二通道部分。 在第一通道部分中,垂直于通道方向的垂直方向上的一个通道的最低部分的位置低于另一个通道在垂直方向上的最低部分的位置。 在通道连接之后的第二通道部分中,从一个通道延伸的部分的垂直方向上的最低部分位于从另一个通道延伸的部分的最下部。 刚刚接合后的通道部分和随后的一个通道部分分别具有垂直于通道方向的不同形状的面。
    • 5. 发明专利
    • Analytical device, method for manufacturing the same, and analyzer using the same
    • 分析装置,其制造方法和使用该分析装置的分析仪
    • JP2011095193A
    • 2011-05-12
    • JP2009251536
    • 2009-10-30
    • Nagoya Univ国立大学法人名古屋大学
    • ONOJIMA DAISUKEKACHI NORIMASATOKESHI MANABUBABA YOSHINOBU
    • G01N35/08G01N21/27G01N37/00
    • PROBLEM TO BE SOLVED: To provide an analytical device using a versatile optical system and having high detection sensitivity, and to provide an analyzer, and an easy and inexpensive method for manufacturing the analytical device.
      SOLUTION: The analyzer 1 includes: the analytical device 5 including a specimen liquid introduction port 10 for introducing specimen liquid, a measuring part 20 for measuring the specimen liquid introduced from the specimen liquid introduction port, and a specimen liquid discharge port 30 for receiving the specimen liquid discharged from the measuring part; a light irradiator 50 for irradiating the measuring part 20 of the analytical device 5 with inspection light; and a photodetector 60 for detecting measurement light from the measuring part 20 of the analytical device 5. The measuring part 20 comprises a channel whose aspect ratio d/w between a depth d and a width w is 3 or more, and whose width w is below 50 μm, and a depth direction of the channel agrees with an optical path direction of inspection light and the measurement light passing the channel.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种使用通用光学系统并具有高检测灵敏度的分析装置,并提供分析器,以及用于制造分析装置的简单且便宜的方法。 解决方案:分析装置1包括:分析装置5,包括用于引入样本液体的标本液引入口10,用于测量从试样液导入口导入的检体液的测定部20和试样液排出口30 用于接收从测量部件排出的样品液体; 用于利用检查光照射分析装置5的测量部分20的光照射器50; 以及用于检测来自分析装置5的测量部分20的测量光的光电检测器60.测量部分20包括其深度d和宽度w之间的纵横比d / w为3或更大并且其宽度w为 低于50μm,并且通道的深度方向与检查光的光路方向和通过通道的测量光一致。 版权所有(C)2011,JPO&INPIT