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    • 1. 发明授权
    • System for targeting cells or other materials
    • 用于靶向细胞或其他材料的系统
    • US08538120B2
    • 2013-09-17
    • US13114982
    • 2011-05-24
    • Kenneth Edward SalsmanUlrich BoettigerDmitry BakinCurtis W. Stith
    • Kenneth Edward SalsmanUlrich BoettigerDmitry BakinCurtis W. Stith
    • G06K9/00
    • G01N15/1012G01N15/1434G01N15/1459G01N15/1463G01N2015/1025G01N2015/1443
    • An image sensor integrated circuit may contain image sensor pixels. A channel containing a fluid with particles such as cells may be formed on top of the image sensor. Some of the image sensor pixels may form a calibration sensor and some of the image sensor pixels may form an imager. As the fluid and particles flow through the channel at a flow rate, the calibration sensor may measures the flow rate and illumination intensity in the channel. Based on calibration data such as measured flow rate and measured illumination intensity, adjustments may be made to ensure that the imager acquires satisfactory image data. The adjustments may include flow rate adjustments, image acquisition data rate adjustments, and illumination adjustments. A processing unit in the channel may contain a laser or other component to destroy selected cells. A flared region in the channel may be used as a chromatograph.
    • 图像传感器集成电路可以包含图像传感器像素。 可以在图像传感器的顶部上形成包含诸如细胞等颗粒的流体的通道。 一些图像传感器像素可以形成校准传感器,并且一些图像传感器像素可以形成成像器。 当流体和颗粒以流速流过通道时,校准传感器可以测量通道中的流量和照射强度。 基于诸如测量流量和测量的照射强度的校准数据,可以进行调整以确保成像器获得令人满意的图像数据。 调整可以包括流量调整,图像采集数据速率调整和照明调整。 通道中的处理单元可以包含用于摧毁所选择的单元的激光器或其他组件。 通道中的扩口区域可用作色谱仪。
    • 2. 发明申请
    • SPECTRALLY TUNED PLASMONIC LIGHT COLLECTORS
    • US20120326256A1
    • 2012-12-27
    • US13365067
    • 2012-02-02
    • Kenneth Edward SalsmanUlrich BoettigerDmitry BakinCurtis W. Stith
    • Kenneth Edward SalsmanUlrich BoettigerDmitry BakinCurtis W. Stith
    • H01L31/0232
    • H01L27/14625H01L27/14603
    • Electronic devices may be provided with imaging modules that include plasmonic light collectors. Plasmonic light collectors may be configured to exploit an interaction between incoming light and plasmons in the plasmonic light collector to alter the path of the incoming light. Plasmonic light collectors may include one or more spectrally tuned plasmonic image pixels configured to preferentially trap light of a given frequency. Spectrally tuned plasmonic image pixels may include plasmonic structures formed form a patterned metal layer over doped silicon layers. Doped silicon layers may be interposed between plasmonic structures and a reflective layer. Plasmonic image pixels may be used to absorb and detect as much as, or more than, ninety percent of incident light at wavelengths ranging from the infrared to the ultraviolet. Plasmonic image pixels that capture light of different colors may be arranged in patterned arrays to form imager modules or imaging spectrometers for optofluidic microscopes.
    • 电子设备可以设置有包括等离子体激光收集器的成像模块。 等离子体光收集器可以被配置为利用等离子体光收集器中的入射光和等离子体激元之间的相互作用来改变入射光的路径。 等离子体光收集器可以包括被配置为优先捕获给定频率的光的一个或多个频谱调谐等离子体像图像。 光谱调谐等离子体激元图像像素可以包括由掺杂硅层上的图案化金属层形成的等离子体结构。 掺杂的硅层可以介于等离子体激元结构和反射层之间。 等离子体像图像可用于吸收和检测多达或多于百分之九十的入射光,其范围从红外至紫外。 捕获不同颜色的光的等离子体像图像可以以图案化阵列布置以形成用于光流体显微镜的成像器模块或成像光谱仪。
    • 3. 发明授权
    • Spectrally tuned plasmonic light collectors
    • 光谱调谐等离子体光收发器
    • US08779483B2
    • 2014-07-15
    • US13365067
    • 2012-02-02
    • Kenneth Edward SalsmanUlrich BoettigerDmitry BakinCurtis W. Stith
    • Kenneth Edward SalsmanUlrich BoettigerDmitry BakinCurtis W. Stith
    • H01L31/02H01L27/146
    • H01L27/14625H01L27/14603
    • Electronic devices may be provided with imaging modules that include plasmonic light collectors. Plasmonic light collectors may be configured to exploit an interaction between incoming light and plasmons in the plasmonic light collector to alter the path of the incoming light. Plasmonic light collectors may include one or more spectrally tuned plasmonic image pixels configured to preferentially trap light of a given frequency. Spectrally tuned plasmonic image pixels may include plasmonic structures formed form a patterned metal layer over doped silicon layers. Doped silicon layers may be interposed between plasmonic structures and a reflective layer. Plasmonic image pixels may be used to absorb and detect as much as, or more than, ninety percent of incident light at wavelengths ranging from the infrared to the ultraviolet. Plasmonic image pixels that capture light of different colors may be arranged in patterned arrays to form imager modules or imaging spectrometers for optofluidic microscopes.
    • 电子设备可以设置有包括等离子体激光收集器的成像模块。 等离子体光收集器可以被配置为利用等离子体光收集器中的入射光和等离子体激元之间的相互作用来改变入射光的路径。 等离子体光收集器可以包括被配置为优先捕获给定频率的光的一个或多个频谱调谐等离子体像图像。 光谱调谐等离子体激元图像像素可以包括由掺杂硅层上的图案化金属层形成的等离子体结构。 掺杂的硅层可以介于等离子体激元结构和反射层之间。 等离子体像图像可用于吸收和检测多达或多于百分之九十的入射光,其范围从红外至紫外。 捕获不同颜色的光的等离子体像图像可以以图案化阵列布置以形成用于光流体显微镜的成像器模块或成像光谱仪。
    • 4. 发明申请
    • OPTO-FLUIDIC MICROSCOPE SYSTEM WITH EVALUATION CHAMBERS
    • US20120044339A1
    • 2012-02-23
    • US13114980
    • 2011-05-24
    • Curtis W. StithDmitry BakinUlrich BoettigerKenneth Edward Salsman
    • Curtis W. StithDmitry BakinUlrich BoettigerKenneth Edward Salsman
    • H04N7/18
    • G01N21/6458B01L3/502715
    • An image sensor integrated circuit may contain image sensor pixels. A channel containing a fluid with particles such as cells may be formed on top of the image sensor. The image sensor pixels may form light sensors and imagers. The imagers may gather images of the cells or other particles as the fluid passes over the imagers. The channel may have multiple branches. Gating structures and other fluid control structures may control the flow of fluid through the channel branches. Portions of the channel may be used to form chambers. The chambers may each be provided with one or more light sensors, light sources, and color filters to alter the color of illumination form a light source, one or more reactants such as dyes, antigens, and antibodies, and heaters. The branches may route the fluid to respective chambers each of which has a different set of capabilities.
    • 图像传感器集成电路可以包含图像传感器像素。 可以在图像传感器的顶部上形成包含诸如细胞等颗粒的流体的通道。 图像传感器像素可以形成光传感器和成像器。 当流体通过成像器时,成像器可以收集细胞或其他颗粒的图像。 频道可能有多个分支。 浇口结构和其他流体控制结构可以控制通过通道分支的流体的流动。 可以使用通道的一部分来形成室。 每个室可以各自设置有一个或多个光传感器,光源和滤色器,以改变来自光源的照明的颜色,一种或多种反应物,例如染料,抗原和抗体,以及加热器。 分支可以将流体路由到各自具有不同能力集合的室。
    • 5. 发明申请
    • SYSTEM FOR TARGETING CELLS OR OTHER MATERIALS
    • 靶向细胞或其他材料的系统
    • US20120045103A1
    • 2012-02-23
    • US13114982
    • 2011-05-24
    • Kenneth Edward SalsmanUlrich BoettigerDmitry BakinCurtis W. Stith
    • Kenneth Edward SalsmanUlrich BoettigerDmitry BakinCurtis W. Stith
    • G06K9/00H04N7/18
    • G01N15/1012G01N15/1434G01N15/1459G01N15/1463G01N2015/1025G01N2015/1443
    • An image sensor integrated circuit may contain image sensor pixels. A channel containing a fluid with particles such as cells may be formed on top of the image sensor. Some of the image sensor pixels may form a calibration sensor and some of the image sensor pixels may form an imager. As the fluid and particles flow through the channel at a flow rate, the calibration sensor may measures the flow rate and illumination intensity in the channel. Based on calibration data such as measured flow rate and measured illumination intensity, adjustments may be made to ensure that the imager acquires satisfactory image data. The adjustments may include flow rate adjustments, image acquisition data rate adjustments, and illumination adjustments. A processing unit in the channel may contain a laser or other component to destroy selected cells. A flared region in the channel may be used as a chromatograph.
    • 图像传感器集成电路可以包含图像传感器像素。 可以在图像传感器的顶部上形成包含诸如细胞等颗粒的流体的通道。 一些图像传感器像素可以形成校准传感器,并且一些图像传感器像素可以形成成像器。 当流体和颗粒以流速流过通道时,校准传感器可以测量通道中的流量和照射强度。 基于诸如测量流量和测量的照射强度的校准数据,可以进行调整以确保成像器获得令人满意的图像数据。 调整可以包括流量调整,图像采集数据速率调整和照明调整。 通道中的处理单元可以包含用于摧毁所选择的单元的激光器或其他组件。 通道中的扩口区域可用作色谱仪。
    • 8. 发明申请
    • IMAGING SYSTEMS WITH ARRAYS OF ALIGNED LENSES
    • 具有对准镜片阵列的成像系统
    • US20120188421A1
    • 2012-07-26
    • US13053728
    • 2011-03-22
    • Ulrich Boettiger
    • Ulrich Boettiger
    • H04N5/335H01L31/18
    • H04N5/2254
    • An imaging system may include an array of lenses, each of which is aligned over a respective one of a plurality of imaging pixels. The array of lenses may be formed in two layers. The first layer may include a first set of non-adjacent lenses and centering structures between the first lenses. The centering structures may be aligned with the first set of lenses as part of a mask design with a high level of accuracy. The second layer may include a second set of lenses, each of which is formed on a respective one of the centering structures. Forming the second set of lenses may include a reflow process in which surface tension forces center the second set of lenses on their respective centering structures, thereby aligning the second set of lenses with the first set of lenses with a high level of accuracy.
    • 成像系统可以包括透镜阵列,每个透镜阵列在多个成像像素中的相应一个上对准。 透镜阵列可以形成为两层。 第一层可以包括第一组非相邻透镜和第一透镜之间的定心结构。 定心结构可以与第一组透镜对准,作为掩模设计的一部分,具有高精度。 第二层可以包括第二组透镜,每个透镜形成在相应的定心结构之一上。 形成第二组透镜可以包括回流工艺,其中表面张力将第二组透镜定位在它们各自的对中结构上,从而以高精度对准第二组透镜与第一组透镜。