0000000000025156

AUTHOR

Yi-pai Huang

showing 6 related works from this author

Long working range light field microscope with fast scanning multifocal liquid crystal microlens array

2018

The light field microscope has the potential of recording the 3D information of biological specimens in real time with a conventional light source. To further extend the depth of field to broaden its applications, in this paper, we proposed a multifocal high-resistance liquid crystal microlens array instead of the fixed microlens array. The developed multifocal liquid crystal microlens array can provide high quality point spread function in multiple focal lengths. By adjusting the focal length of the liquid crystal microlens array sequentially, the total working range of the light field microscope can be much extended. Furthermore, in our proposed system, the intermediate image was placed i…

Point spread functionMicrolensMicroscopeMaterials sciencebusiness.industry02 engineering and technologyÒptica021001 nanoscience & nanotechnology01 natural sciencesAtomic and Molecular Physics and OpticsNumerical aperturelaw.invention010309 opticsMicroscòpiaOpticslawLiquid crystal0103 physical sciencesFocal lengthDepth of field0210 nano-technologybusinessLight field
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Multidimensional Optical Sensing and Imaging Systems (MOSIS): From Macro to Micro Scales

2017

Multidimensional optical imaging systems for information processing and visualization technologies have numerous applications in fields such as manufacturing, medical sciences, entertainment, robotics, surveillance, and defense. Among different three-dimensional (3-D) imaging methods, integral imaging is a promising multiperspective sensing and display technique. Compared with other 3-D imaging techniques, integral imaging can capture a scene using an incoherent light source and generate real 3-D images for observation without any special viewing devices. This review paper describes passive multidimensional imaging systems combined with different integral imaging configurations. One example…

medicine.medical_specialtyIntegral imagingbusiness.industryMultispectral imageComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONImaging spectrometerImage registrationImage sensorsOptical imagingSpectral imagingGeographyFull spectral imagingOptical sensorsmedicineThree-dimensional displaysComputer visionArtificial intelligenceImaging scienceElectrical and Electronic EngineeringImage sensorbusinessVisualization
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Multidimensional Integral Imaging and Recognition in Degraded Environments

2018

We present an overview of our work on multidimensional integral imaging systems. Integral-imaging-based multidimensional optical sensing and imaging will be described for 3-D visualization, seeing through obscurations, material inspection, augmented reality, biomedical applications, and object recognition from microscales to long-range imaging.

Integral imagingbusiness.industryComputer scienceComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONCognitive neuroscience of visual object recognitionPhoton countingVisualizationThree dimensional imagingOptical sensingMedical imagingAugmented realityComputer visionArtificial intelligencebusinessLatin America Optics and Photonics Conference
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Fast Axial Scanning in 3D Imaging

2016

We establish the conditions for obtaining fast axial 3D microscopy with constant magnification, invariant resolution, and symmetrical displacement range. We demonstrate that liquid lenses permit the axial scanning free of mechanical movements and vibrations. This allows speeding-up the process and avoiding distortionsin the image of dynamic specimens. Article not available.

VibrationOpticsThree dimensional imagingChemistrybusiness.industryResolution (electron density)MagnificationInvariant (mathematics)business3d microscopyDisplacement (vector)Imaging and Applied Optics 2016
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Fast Axial-Scanning Widefield Microscopy With Constant Magnification and Resolution

2015

In this paper, we propose the use of electrically-addressable lens devices for performing fast non-mechanical axial scanning when imaging three-dimensional samples. This non-mechanical method can be implemented in any commercial microscope. The approach is based on the insertion of the tunable lens at the aperture stop of the microscope objective. By tuning the voltage, a stack of depth images of 3D specimens can be captured in real time and with constant magnification and resolution. The main advantage of our technique is the possibility of performing fast axial scanning free of mechanical vibrations.

Materials scienceMicroscopebusiness.industryResolution (electron density)ComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONMagnificationCondensed Matter PhysicsElectronic Optical and Magnetic Materialslaw.inventionLens (optics)OpticsOptical microscopeStack (abstract data type)lawConfocal microscopyMicroscopyElectrical and Electronic EngineeringbusinessJournal of Display Technology
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Liquid crystal lens array for 3D microscopy and endoscope application

2016

In this paper, we demonstrate two liquid crystal (LC) lens array devices for 3D microscope and 3D endoscope applications respectively. Compared with the previous 3D biomedical system, the proposed LC lens arrays are not only switchable between 2D and 3D modes, but also are able to adjust focus in both modes. The multi-function liquid crystal lens (MFLC-lens) array with dual layer electrode has diameter 1.42 mm, which is much smaller than the conventional 3D endoscope with double fixed lenses. The hexagonal liquid crystal micro-lens array (HLC-MLA) instead of fixed micro-lens array in 3D light field microscope can extend the effective depth of field from 60 um to 780 um. To achieve the LC le…

MicroscopeMaterials scienceEndoscopebusiness.industry02 engineering and technology021001 nanoscience & nanotechnology01 natural scienceslaw.invention010309 opticsLens (optics)OpticslawLiquid crystal0103 physical sciencesElectrode0210 nano-technologyFocus (optics)businessLayer (electronics)Light fieldSPIE Proceedings
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