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Extended depth-of-field 3D endoscopy with synthetic aperture integral imaging using an electrically tunable focal-length liquid-crystal lens

机译:使用电子可调焦距液晶透镜通过合成孔径积分成像实现扩展的景深3D内窥镜检查

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Conventional synthetic-aperture integral imaging uses a lens array to sense the three-dimensional (3D) object or scene that can then be reconstructed digitally or optically. However, integral imaging generally suffers from a fixed and limited range of depth of field (DOF). In this Letter, we experimentally demonstrate a 3D integral-imaging endoscopy with tunable DOF by using a single large-aperture focal-length-tunable liquid crystal (LC) lens. The proposed system can provide high spatial resolution and an extended DOF in synthetic-aperture integral imaging 3D endoscope. In our experiments, the image plane in the integral imaging pickup process can be tuned from 18 to 38 mm continuously using a large-aperture LC lens, and the total DOF is extended from 12 to 51 mm. To the best of our knowledge, this is the first report on synthetic aperture integral imaging 3D endoscopy with a large-aperture LC lens that can provide high spatial resolution 3D imaging with an extend DOF. (C) 2015 Optical Society of America
机译:传统的合成孔径积分成像使用透镜阵列来感测三维(3D)对象或场景,然后可以数字或光学方式对其进行重建。但是,整体成像通常会受到固定且有限范围的景深(DOF)的困扰。在这封信中,我们通过使用单个大口径焦距可调液晶(LC)透镜,通过实验演示了具有可调DOF的3D积分成像内窥镜。所提出的系统可以在合成孔径积分成像3D内窥镜中提供高空间分辨率和扩展的自由度。在我们的实验中,使用大口径LC透镜可以连续地将积分成像拾取过程中的像面从18毫米调整到38毫米,并且总自由度从12毫米扩展到51毫米。据我们所知,这是有关具有大口径LC透镜的合成孔径积分成像3D内窥镜的首次报道,该透镜可提供具有扩展DOF的高空间分辨率3D成像。 (C)2015年美国眼镜学会

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