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Variable-focal length microlens arrays in confocal microscopy

机译:共焦显微镜中的可变焦距微透镜阵列

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Microlenses have been implemented in confocal systems successfully as components of aperture arrays and as arrays of objective lenses. The use of the novel technology of variable focal length (VFL) microlenses in the confocal system is investigated. The use of VFL microlenses as an aperture array in conjunction with an optical fiber as a pinhole array is examined. Axial responses of the system where measured and the Full-Width Half Maximum (FWHM) found to be ~16μm. VFL microlenses as an array of objective lenses is investigated with a novel method for scanning in the axial direction presented. By variation of the focal length of the lenses the focal plane can be scanned through the sample without the mechanical movement of the sample or the objective lens, we have named this 'focal scanning'. It is shown that the limiting factor with this type of scanning is the low numerical aperture (NA) of the microlenses available. Both focal scanning and conventional scanning are examined for this experimental set-up.
机译:微透镜已成功地在共焦系统中实现为孔径阵列和物镜阵列的组件。研究了在共焦系统中使用可变焦距(VFL)微透镜的新技术。检验了使用VFL微透镜作为孔径阵列以及将光纤用作针孔阵列。被测系统的轴向响应和半峰全宽(FWHM)为〜16μm。用一种新型的在轴向方向上扫描的方法研究了作为物镜阵列的VFL微透镜。通过改变透镜的焦距,可以在没有样品或物镜机械移动的情况下通过样品扫描焦平面,我们将其称为“聚焦扫描”。结果表明,这种类型的扫描的限制因素是可用的微透镜的低数值孔径(NA)。对于此实验装置,将检查聚焦扫描和常规扫描。

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