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    • 6. 发明申请
    • MICROSCOPY METHOD AND SYSTEM INCORPORATING NANOFEATURES
    • 显微镜方法和系统纳入纳米技术
    • WO2012054351A3
    • 2012-06-28
    • PCT/US2011056439
    • 2011-10-14
    • UNIV CALIFORNIAOZCAN AYDOGAN
    • OZCAN AYDOGAN
    • G01B9/04G01N33/483
    • H01L27/14625B82Y15/00G01B21/00G01N21/253G01N21/41
    • A lensfree imaging and sensing device includes an image sensor comprising an array of pixels and a substantially optically transparent layer disposed above the image sensor. Nano-sized features that support surface plasmon waves are populated on the substantially optically transparent layer separating the image sensor from the nano-sized features. The nano-sized features may include apertures through a substantially optically opaque layer (e.g., metal layer) or they may include antennas. An illumination source is provided that is configured to illuminate a sample. At least one processor is operatively coupled to the image sensor. Changes to the detected transmission pattern at the image sensor are used to sense conditions at or near the surface containing the nano-sized features. Conditions may include binding events or other changes to the index of refraction occurring near the surface of the device.
    • 无镜头成像和感测装置包括包含像素阵列的图像传感器和设置在图像传感器上方的基本光学透明层。 支持表面等离子体振子波的纳米尺寸特征填充在将图像传感器与纳米尺寸特征分离的基本上光学透明的层上。 纳米尺寸的特征可以包括穿过基本光学不透明层(例如,金属层)的孔或者它们可以包括天线。 提供配置成照亮样品的照明源。 至少一个处理器可操作地耦合到图像传感器。 在图像传感器处对检测到的透射图案的改变用于感测包含纳米尺寸特征的表面处或附近的状况。 条件可以包括绑定事件或对设备表面附近发生的折射率的其他改变。