0000000000306075

AUTHOR

Nurmohammed Patwary

showing 4 related works from this author

Experimental validation of a customized phase mask designed to enable efficient computational optical sectioning microscopy through wavefront encodin…

2017

In this paper, wavefront-encoded (WFE) computational optical sectioning microscopy (COSM) using a fabricated square cubic (SQUBIC) phase mask, designed to render the system less sensitive to depth-induced aberration, is investigated. The WFE-COSM system is characterized by a point spread function (PSF) that does not vary as rapidly with imaging depth compared to the conventional system. Thus, in WFE-COSM, image restoration from large volumes can be achieved using computationally efficient space-invariant (SI) algorithms, thereby avoiding the use of depth-variant algorithms. The fabricated SQUBIC phase mask was first evaluated and found to have a 75% fidelity compared to the theoretical desi…

WavefrontPoint spread functionMicroscopeMaterials scienceOptical sectioningImage qualitybusiness.industryMaterials Science (miscellaneous)Experimental data02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesIndustrial and Manufacturing Engineeringlaw.invention010309 opticsOpticslaw0103 physical sciencesMicroscopyBusiness and International Management0210 nano-technologybusinessImage restorationApplied optics
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Reducing effects of aberration in 3D fluorescence imaging using wavefront coding with a radially symmetric phase mask.

2016

In this work, a wavefront encoded (WFE) imaging system built using a squared cubic phase mask, designed to reduce the sensitivity of the imaging system to spherical aberration, is investigated. The proposed system allows the use of a space-invariant image restoration algorithm, which uses a single PSF, to restore intensity distribution in images suffering aberration, such as sample–induced aberration in thick tissue. This provides a computational advantage over depth-variant image restoration algorithms developed previously to address this aberration. Simulated PSFs of the proposed system are shown to change up to 25% compared to the 0 µm depth PSF (quantified by the structural similarity i…

WavefrontPhysicsSpatial filterbusiness.industryImage processing02 engineering and technologyIterative reconstruction021001 nanoscience & nanotechnology01 natural sciencesAtomic and Molecular Physics and Optics010309 opticsSpherical aberrationOptics0103 physical sciencesSensitivity (control systems)0210 nano-technologybusinessImage restorationWavefront codingOptics express
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Spatial light modulator phase mask implementation of wavefront encoded 3D computational-optical microscopy

2015

Spatial light modulator (SLM) implementation of wavefront encoding enables various types of engineered pointspread functions (PSFs), including the generalized-cubic and squared-cubic phase mask wavefront encoded (WFE) PSFs, shown to reduce the impact of sample-induced spherical aberration in fluorescence microscopy. This investigation validates dynamic experimental parameter variation of these WFE-PSFs. We find that particular design parameter bounds exist, within which the divergence of computed and experimental WFE-PSFs is of the same order of magnitude as that of computed and experimental conventional PSFs, such that model-based approaches for solving the inverse imaging problem can be a…

WavefrontPhysicsSpatial light modulatorbusiness.industryMaterials Science (miscellaneous)Phase (waves)Industrial and Manufacturing Engineeringlaw.inventionInterferometrySpherical aberrationOpticsOptical microscopelawMicroscopyBusiness and International ManagementDivergence (statistics)businessApplied Optics
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Evaluation of the use of wavefront encoding to reduce depth-induced aberration in structured-illumination microscopy

2018

Three-dimensional imaging is affected by depth-induced spherical aberration (SA) when imaging deep into an optically thick sample. In this work, we evaluate the impact of SA on the performance of incoherent grating-projection structured illumination microscopy (SIM). In particular, we analyze the reduction of the contrast in the structured pattern and compare the reconstructed SIM images for different amounts of SA. In order to mitigate the impact of SA, we implement and evaluate in SIM a wavefront encoded imaging system using a square cubic (SQUBIC) phase mask, an approach shown previously to be successful in conventional microscopy.

WavefrontMaterials sciencebusiness.industrymedia_common.quotation_subjectStructured illumination microscopySample (graphics)Òptica Aparells i instrumentsReduction (complexity)Spherical aberrationOpticsEncoding (memory)MicroscopyContrast (vision)businessmedia_common
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