Few models, based on the diffraction theory, are proposed in order to evaluate the point spread function of different microscope objectives used in a digital holographic microscope. Because in holography the phase information is essential, a 3D amplitude point spread function (APSF), modulus and phase, is necessary, in order to properly deconvolute the 3D images obtained. Scalar Debye theory, paraxial approximation and vectorial Debye theory are used to solve the diffraction problem and the theoretical predicted 3D APSFs obtained. with these models are compared
The application of digital holographic microscopy offers quantitative phase contrast imaging of refl...
A digital micromirror device (DMD) has a wide range of applications in holographic display, light fi...
Confocal scanning microscopes are imaging systems that are mainly featured by their unique depth-dis...
We present here a three-dimensional evaluation of the amplitude point-spread function (APSF) of a mi...
We present a theoretical formulation to quantify the imaging properties of volume holographic micros...
The utilization of microscope objectives (MOs) in digital holographic microscopy (DHM) has associate...
The diploma thesis deals with theory of imaging in a transmitted-light digital holographic microscop...
In this paper, processing methods of Fourier optics implemented in a digital holographic microscopy ...
In digital holographic microscopy (DHM) a hologram is captured in the image space provided by a micr...
This thesis deals with imaging through diffuse media in coherence-controlled holographic microscope ...
Three numerical methods for calculating the point spread function for holographic optical elements i...
Digital Holography Microscopy (DHM) is a powerful tool for three-dimensional imaging of micro-object...
We report on new developments of a technique, called Digital Holographic Microscopy (DHM), for the n...
Digital Holography Microscopy (DHM) is a new 3D measurement technique that exists since Charge Coupl...
As digital holographic microscopy (DHM) uses microscope objectives (MO) for enlarging the sample, so...
The application of digital holographic microscopy offers quantitative phase contrast imaging of refl...
A digital micromirror device (DMD) has a wide range of applications in holographic display, light fi...
Confocal scanning microscopes are imaging systems that are mainly featured by their unique depth-dis...
We present here a three-dimensional evaluation of the amplitude point-spread function (APSF) of a mi...
We present a theoretical formulation to quantify the imaging properties of volume holographic micros...
The utilization of microscope objectives (MOs) in digital holographic microscopy (DHM) has associate...
The diploma thesis deals with theory of imaging in a transmitted-light digital holographic microscop...
In this paper, processing methods of Fourier optics implemented in a digital holographic microscopy ...
In digital holographic microscopy (DHM) a hologram is captured in the image space provided by a micr...
This thesis deals with imaging through diffuse media in coherence-controlled holographic microscope ...
Three numerical methods for calculating the point spread function for holographic optical elements i...
Digital Holography Microscopy (DHM) is a powerful tool for three-dimensional imaging of micro-object...
We report on new developments of a technique, called Digital Holographic Microscopy (DHM), for the n...
Digital Holography Microscopy (DHM) is a new 3D measurement technique that exists since Charge Coupl...
As digital holographic microscopy (DHM) uses microscope objectives (MO) for enlarging the sample, so...
The application of digital holographic microscopy offers quantitative phase contrast imaging of refl...
A digital micromirror device (DMD) has a wide range of applications in holographic display, light fi...
Confocal scanning microscopes are imaging systems that are mainly featured by their unique depth-dis...