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    • 5. 发明授权
    • Compensator for multiple surface imaging
    • 多表面成像补偿器
    • US08698102B2
    • 2014-04-15
    • US14056590
    • 2013-10-17
    • Illumina, Inc.
    • Wenyi FengJason BryantDale Buermann
    • G01N21/64
    • C12Q1/6874C12Q1/6825C12Q1/6869G01N21/05G01N21/6458G01N2021/0346G01N2021/6419G01N2021/6421G02B21/0024G02B2207/113
    • A system and method for imaging biological samples on multiple surfaces of a support structure are disclosed. The support structure may be a flow cell through which a reagent fluid is allowed to flow and interact with the biological samples. Excitation radiation from at least one radiation source may be used to excite the biological samples on multiple surfaces. In this manner, fluorescent emission radiation may be generated from the biological samples and subsequently captured and detected by detection optics and at least one detector. The detected fluorescent emission radiation may then be used to generate image data. This imaging of multiple surfaces may be accomplished either sequentially or simultaneously. In addition, the techniques of the present invention may be used with any type of imaging system. For instance, both epifluorescent and total internal reflection methods may benefit from the techniques of the present invention.
    • 公开了用于在支撑结构的多个表面上成像生物样品的系统和方法。 支撑结构可以是允许试剂流体通过其流动并与生物样品相互作用的流动池。 来自至少一个辐射源的激发辐射可用于在多个表面上激发生物样品。 以这种方式,可以从生物样品产生荧光发射辐射,随后由检测光学器件和至少一个检测器捕获和检测。 然后可以使用检测到的荧光发射辐射来产生图像数据。 多个表面的这种成像可以顺序地或同时地完成。 此外,本发明的技术可以与任何类型的成像系统一起使用。 例如,荧光和全内反射方法都可以受益于本发明的技术。
    • 9. 发明申请
    • COMPENSATOR FOR MULTIPLE SURFACE IMAGING
    • 用于多个表面成像的补偿器
    • US20140045708A1
    • 2014-02-13
    • US14056590
    • 2013-10-17
    • Illumina, Inc.
    • Wenyi FengJason BryantDale Buermann
    • C12Q1/68
    • C12Q1/6874C12Q1/6825C12Q1/6869G01N21/05G01N21/6458G01N2021/0346G01N2021/6419G01N2021/6421G02B21/0024G02B2207/113
    • A system and method for imaging biological samples on multiple surfaces of a support structure are disclosed. The support structure may be a flow cell through which a reagent fluid is allowed to flow and interact with the biological samples. Excitation radiation from at least one radiation source may be used to excite the biological samples on multiple surfaces. In this manner, fluorescent emission radiation may be generated from the biological samples and subsequently captured and detected by detection optics and at least one detector. The detected fluorescent emission radiation may then be used to generate image data. This imaging of multiple surfaces may be accomplished either sequentially or simultaneously. In addition, the techniques of the present invention may be used with any type of imaging system. For instance, both epifluorescent and total internal reflection methods may benefit from the techniques of the present invention.
    • 公开了用于在支撑结构的多个表面上成像生物样品的系统和方法。 支撑结构可以是允许试剂流体通过其流动并与生物样品相互作用的流动池。 来自至少一个辐射源的激发辐射可用于在多个表面上激发生物样品。 以这种方式,可以从生物样品产生荧光发射辐射,随后由检测光学器件和至少一个检测器捕获和检测。 然后可以使用检测到的荧光发射辐射来产生图像数据。 多个表面的这种成像可以顺序地或同时地完成。 此外,本发明的技术可以与任何类型的成像系统一起使用。 例如,荧光和全内反射方法都可以受益于本发明的技术。