Publication | Open Access
Resolution improvements in integral microscopy with Fourier plane recording
102
Citations
18
References
2016
Year
EngineeringMicroscopyResolution ImprovementsBiomedical EngineeringMicroscopy MethodSpatial ResolutionLight MicroscopyBiophysicsRadiologyLight Field ImagingOphthalmologyMedical ImagingSuper-resolutionMedical Image ComputingView ReconstructionsIntegral MicroscopesMicroscope Image ProcessingBiomedical ImagingMedicine3D Imaging
Integral microscopes (IMic) have been recently developed in order to capture the spatial and the angular information of 3D microscopic samples with a single exposure. Computational post-processing of this information permits to carry out a 3D reconstruction of the sample. By applying conventional algorithms, both depth and also view reconstructions are possible. However, the main drawback of IMic is that the resolution of the reconstructed images is low and axially heterogeneous. In this paper, we propose a new configuration of the IMic by placing the lens array not at the image plane, but at the pupil (or Fourier) plane of the microscope objective. With this novel system, the spatial resolution is increased by factor 1.4, and the depth of field is substantially enlarged. Our experiments show the feasibility of the proposed method.
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