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Laser tweezer controlled solid immersion lens for high resolution imaging in microfluidic and biological samples

机译:激光镊子控制固体浸渍镜片,用于微流体和生物样品的高分辨率成像

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A novel technique is presented which integrates the capacity of a laser tweezer to optically trap and manipulate objects in three-dimensions with the'resolution-enhanced imaging capabilities of a solid immersion lens (SIL). Up to now, solid immersion lens imaging systems have relied upon cantilever-mounted SILs that are difficult to integrate into microfluidic systems and require an extra alignment step with external optics. As an alternative to the current state-of-art, we introduce a device that consists of a free-floating SIL and a laser optical tweezer. In our design, the optical tweezer, created by focusing a laser beam through high numerical aperture microscope objective, acts in a two-fold manner: both as a trapping beam for the positioning and alignment of the SIL and as an near-field scanning beam to image the sample through the SIL. Combining the alignment, positioning, and imaging functions into a single device allows for the direct integration of a high resolution imaging system into microfluidic and biological environments.
机译:提出了一种新颖的技术,其集成了激光镊子的容量,以利用固体浸没透镜(SIL)的“增强的成像能力”中的三维中的对象进行光学捕获和操纵物体。到目前为止,固体浸没透镜成像系统依赖于悬臂安装的SIL,难以将其集成到微流体系统中,并且需要额外的对准步骤与外部光学器件。作为当前最先进的替代方案,我们介绍了一种由自由浮动SIL和激光光学镊子组成的装置。在我们的设计中,通过通过高数孔径显微镜物镜聚焦激光束创造的光学镊子,以双倍的方式起作用:两者都作为用于SIL的定位和对准的捕获光束,并且作为近场扫描光束通过SIL将样品图像图像。将对准,定位和成像功能结合到单个设备中允许将高分辨率成像系统直接集成到微流体和生物环境中。

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