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    • 4. 发明授权
    • Chemical reaction cartridge and method of using same
    • 化学反应筒及其使用方法
    • US07858045B2
    • 2010-12-28
    • US11528535
    • 2006-09-28
    • Takeo TanaamiSaya SatouHisao Katakura
    • Takeo TanaamiSaya SatouHisao Katakura
    • B01L3/00
    • B01L3/5027B01L7/525B01L2300/0816B01L2300/0864B01L2300/087B01L2300/123B01L2400/0421B01L2400/0481G01N27/447Y10T436/25375Y10T436/255Y10T436/2575
    • A cartridge adaptable to various measurement forms is provided. A sample is injected into a well via an injection path. When a roller while kept pressed into contact with the cartridge is rotated rightward, the sample held in the well, and liquid solvent held in a well are caused to reach a well via flow paths, respectively, thereby mixing the sample with the liquid solvent. A mixed liquid is branched into flow paths, respectively, to thereby reach wells, respectively, and reagents pre-held in wells, respectively, are caused to flow into the wells, respectively. Next, temperatures in the wells, respectively, are controlled, thereby executing DNA amplification. Then, PCR by-products as amplified in the wells, respectively, are transferred as far as a position in the vicinity of an electrode via flow paths. Subsequently, a voltage is applied across the electrode as a negative electrode, and an electrode as a positive electrode via a drawing electrode and a drawing electrode, to thereby cause the PCR by-products to undergo electrophoresis.
    • 提供适用于各种测量形式的盒式磁带。 样品通过注射路径注入孔中。 当保持按压与筒接触的辊子向右旋转时,将样品保持在井中,并且使保持在孔中的液体溶剂分别通过流动路径到达井,从而将样品与液体溶剂混合。 分别将混合液体分支成流路,从而分别到达井,分别将预先保存在井中的试剂流入孔中。 接下来,分别控制孔中的温度,从而进行DNA扩增。 然后,分别在孔中扩增的PCR副产物通过流路被转移到电极附近的位置。 随后,通过拉伸电极和拉伸电极将作为负极的电极和作为正极的电极施加电压,从而使PCR副产物进行电泳。
    • 9. 发明申请
    • Biochip reader and fluorometric imaging apparatus
    • 生物芯片阅读器和荧光成像设备
    • US20090032736A1
    • 2009-02-05
    • US12232704
    • 2008-09-23
    • Takeo Tanaami
    • Takeo Tanaami
    • G01N21/64
    • G02B21/0076G01N21/6428G01N21/6452G01N21/6458G01N2021/6478G01N2021/6491G02B21/0044G02B21/16
    • The present invention provides a biochip reader for reading the image information of samples using a photodetector device, by irradiating a corresponding beam of excitation light at each site of a biochip on which a plurality of the samples are arranged at equal pitches, the biochip reader comprising: a microlens substrate provided with a plurality of microlenses to transform excitation light to be irradiated at the biochip into a multibeam; and a zoom lens located between the microlens substrate and the biochip and capable of projecting the multibeam while adjusting the pitch between sites of the biochip to the pitch of the multibeam. The present invention further provides a fluorometric imaging apparatus for detecting the image of a specimen by irradiating excitation light at samples on the specimen arranged in a two-dimensional manner and measuring fluorescent light produced from a fluorescent substance attached to the specimen, the fluorometric imaging apparatus comprising: a two-dimensional photodetector device for detecting excitation light passing through the specimen or reflecting off the surface thereof; and movement means for repositioning the specimen according to images observed on the photoreceptor device.
    • 本发明提供一种生物芯片阅读器,用于通过在生物芯片的每个位置以相等的间距照射生物芯片的每一个位置处照射相应的激发光束,以使用光电检测器装置读取样本的图像信息,生物芯片读取器包括 :具有多个微透镜的微透镜基板,用于将要在生物芯片上照射的激发光转换成多光束; 以及位于微透镜基板和生物芯片之间的变焦透镜,并且能够在将生物芯片的位置之间的间距调节到多光束的间距的同时投影多波束。 本发明还提供了一种荧光成像装置,用于通过以二维方式照射在样本上的样品照射激发光并测量由附着到样本的荧光物质产生的荧光来检测样本的图像,该荧光成像装置 包括:二维光电检测器装置,用于检测通过样本的激发光或者从其表面反射; 以及用于根据感光器件上观察到的图像重新定位样本的移动装置。