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Journal ArticleDOI

Compensation of the inherent wave front curvature in digital holographic coherent microscopy for quantitative phase-contrast imaging

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TLDR
An approach is proposed for removing the wavefront curvature introduced by the microscope imaging objective in digital holography, which otherwise hinders the phase contrast imaging at reconstruction planes and it is shown that a correction effect can be obtained at all reconstruction planes.
Abstract
An approach is proposed for removing the wave front curvature introduced by the microscope imaging objective in digital holography, which otherwise hinders the phase contrast imaging at reconstruction planes. The unwanted curvature is compensated by evaluating a correcting wave front at the hologram plane with no need for knowledge of the optical parameters, focal length of the imaging lens, or distances in the setup. Most importantly it is shown that a correction effect can be obtained at all reconstruction planes. Three different methods have been applied to evaluate the correction wave front and the methods are discussed in detail. The proposed approach is demonstrated by applying digital holography as a method of coherent microscopy for imaging amplitude and phase contrast of microstructures.

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Journal ArticleDOI

pyDHM: A Python library for applications in digital holographic microscopy

TL;DR: The pyDHM implements phase-shifting approaches for in-line and slightly off-axis systems and enables phase compensation for telecentric and non-telecentric systems and three propagation algorithms for numerical focusing complex amplitude distributions in DHM and digital holography (DH) setups are validated.
Proceedings ArticleDOI

Near real-time digital holographic imaging on conventional central processing unit

TL;DR: A near real time digital holographic imaging algorithm achieving ∼4 fps operation speed on a common central processing unit and utilizing experimental calibration of the optical instrument for aberration correction is discussed.
Proceedings ArticleDOI

Study on effects of organic solvents on Hela cells by digital holography

TL;DR: Based on the pre-magnification off-axis Fresnel digital holographic theory, an inverted microscopy system is built to obtain the phase-contrast images of the Hela cells, which are added different concentrations of organic solvents as mentioned in this paper.
Proceedings ArticleDOI

3D Imaging With Large Focus Extension By A Coherent Optical Microscope

TL;DR: It is demonstrated that an EFI of an object can be obtained through digital holography (DH) without any mechanical scanning or special optical components.
Proceedings ArticleDOI

Multi-modal quantitative analysis of HeLa cells using digital holographic microscopy and confocal laser scanning microscopy

TL;DR: A strong linear correlation of nucleoli dry mass to their projection area is suggested, a result that is promising in terms of its biological relevance.
References
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Journal ArticleDOI

Phase-shifting digital holography

TL;DR: A new method is proposed in which the distribution of complex amplitude at a plane is measured by phase-shifting interferometry and then Fresnel transformed by a digital computer, which can reconstruct an arbitrary cross section of a three-dimensional object with higher image quality and a wider viewing angle than from conventional digital holography using an off-axis configuration.
Journal ArticleDOI

Direct recording of holograms by a CCD target and numerical reconstruction.

TL;DR: The principle of recording holograms directly on a CCD target is described and a real image of the object is reconstructed from the digitally sampled hologram by means of numerical methods.
Journal ArticleDOI

Digital holography for quantitative phase-contrast imaging.

TL;DR: A new application of digital holography for phase-contrast imaging and optical metrology and an application to surface profilometry shows excellent agreement with contact-stylus probe measurements.
Journal ArticleDOI

Simultaneous amplitude-contrast and quantitative phase-contrast microscopy by numerical reconstruction of Fresnel off-axis holograms

TL;DR: Off-axis holograms recorded with a magnified image of microscopic objects are numerically reconstructed in amplitude and phase by calculation of scalar diffraction in the Fresnel approximation to show that the transverse resolution is equal to the diffraction limit of the imaging system.
Journal ArticleDOI

Digital recording and numerical reconstruction of holograms

TL;DR: The principles and major applications of digital recording and numerical reconstruction of holograms (digital holography) are described, which are applied to measure shape and surface deformation of opaque bodies and refractive index fields within transparent media.
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