We characterize the three-dimensional (3-D) double-helix (DH) point-spread function (PSF) for depthvariant fluorescence microscopy imaging motivated by our interest to integrate the DH-PSF in computational optical sectioning microscopy (COSM) imaging. Physical parameters, such as refractive index and thickness variability of imaging layers encountered in 3-D microscopy give rise to depth-induced spherical aberration (SA) that change the shape of the PSF at different focusing depths and render computational approaches less practical. Theoretical and experimental studies performed to characterize the DH-PSF under varying imaging conditions are presented. Results show reasonable agreement between theoretical and experimental DH-PSFs suggesting...
Super-resolution techniques that localize single molecules in three dimensions through point spread ...
We show that the use of multiple depth-variant point-spread functions in 3D fluorescence intensity r...
The effect of depth-induced spherical aberrations (SA) on structured illumination microscopy (SIM)1 ...
We characterize the three-dimensional (3-D) double-helix (DH) point-spread function (PSF) for depthv...
Point spread function engineering with a double helix (DH) phase mask has been recently used in a jo...
Double Helix point-spread functions (DH-PSFs), the result of PSF engineering, are used for super res...
Noninvasive three-dimensional (3D) imaging of thick samples in fluorescence microscopy is traditiona...
We examine the Fourier content of the double helix point-spread function (DH-PSF) by computing the D...
The point spread function (PSF) of a widefield fluorescence microscope is not suitable for three-dim...
Wavefront encoding (WFE) with different cubic phase mask designs was investigated in engineering 3D ...
<p> A wide-field fluorescence microscope with a double-helix point spread function (PSF) is constru...
In recent years, super-resolution imaging has become an important fluorescent microscopy tool. It ha...
Previous empirical results suggest that the use of an experimentally determined point- spread functi...
<p>Point spread function (PSF) engineering has met with lots of interest in various optical imaging ...
A three-dimensional (3-D) point spread function (PSF) model for wide-field fluorescence microscopy, ...
Super-resolution techniques that localize single molecules in three dimensions through point spread ...
We show that the use of multiple depth-variant point-spread functions in 3D fluorescence intensity r...
The effect of depth-induced spherical aberrations (SA) on structured illumination microscopy (SIM)1 ...
We characterize the three-dimensional (3-D) double-helix (DH) point-spread function (PSF) for depthv...
Point spread function engineering with a double helix (DH) phase mask has been recently used in a jo...
Double Helix point-spread functions (DH-PSFs), the result of PSF engineering, are used for super res...
Noninvasive three-dimensional (3D) imaging of thick samples in fluorescence microscopy is traditiona...
We examine the Fourier content of the double helix point-spread function (DH-PSF) by computing the D...
The point spread function (PSF) of a widefield fluorescence microscope is not suitable for three-dim...
Wavefront encoding (WFE) with different cubic phase mask designs was investigated in engineering 3D ...
<p> A wide-field fluorescence microscope with a double-helix point spread function (PSF) is constru...
In recent years, super-resolution imaging has become an important fluorescent microscopy tool. It ha...
Previous empirical results suggest that the use of an experimentally determined point- spread functi...
<p>Point spread function (PSF) engineering has met with lots of interest in various optical imaging ...
A three-dimensional (3-D) point spread function (PSF) model for wide-field fluorescence microscopy, ...
Super-resolution techniques that localize single molecules in three dimensions through point spread ...
We show that the use of multiple depth-variant point-spread functions in 3D fluorescence intensity r...
The effect of depth-induced spherical aberrations (SA) on structured illumination microscopy (SIM)1 ...