In this simulation study, an engineered point-spread function (PSF) with reduced depth variability (due to depth-induced aberrations) was applied to three-dimensional computational optical-sectioning microscopy (COSM) imaging to investigate its impact on image restoration. Intermediate synthetic images from PSF-engineered COSM in the presence of aberrations were computed and then processed using a depth-variant expectation maximization algorithm. The restored images were compared to images simulated for traditional COSM. Results show that PSF-engineered COSM achieves better image restoration than conventional COSM and has the potential to improve imaging in the presence of depth-induced aberrations. © 2012 IEEE
We evaluated different phase mask designs for PSF engineering using wavefront encoding, to reduce th...
We evaluated different phase mask designs for PSF engineering using wavefront encoding, to reduce th...
We evaluated different phase mask designs for PSF engineering using wavefront encoding, to reduce th...
In this simulation study, an engineered point-spread function (PSF) with reduced depth variability (...
We demonstrate 3D microscope imaging using computational optical sectioning microscopy (COSM) with a...
We demonstrate 3D microscope imaging using computational optical sectioning microscopy (COSM) with a...
Wavefront encoding (WFE) with different cubic phase mask designs was investigated in engineering 3D ...
Wavefront encoding (WFE) with different cubic phase mask designs was investigated in engineering 3D ...
Wavefront encoding (WFE) with different cubic phase mask designs was investigated in engineering 3D ...
We tested the most complete optical model available for computational optical-sectioning microscopy ...
Performance investigation of improved extended depth-of-field microscopy achieved with point-spread ...
Performance investigation of improved extended depth-of-field microscopy achieved with point-spread ...
In this study, we evaluated a point-spread function (PSF) engineered using wave front encoding (WFE)...
In this study, we evaluated a point-spread function (PSF) engineered using wave front encoding (WFE)...
Experimentally determined point-spread functions (PSF) have been used routinely for reconstructions ...
We evaluated different phase mask designs for PSF engineering using wavefront encoding, to reduce th...
We evaluated different phase mask designs for PSF engineering using wavefront encoding, to reduce th...
We evaluated different phase mask designs for PSF engineering using wavefront encoding, to reduce th...
In this simulation study, an engineered point-spread function (PSF) with reduced depth variability (...
We demonstrate 3D microscope imaging using computational optical sectioning microscopy (COSM) with a...
We demonstrate 3D microscope imaging using computational optical sectioning microscopy (COSM) with a...
Wavefront encoding (WFE) with different cubic phase mask designs was investigated in engineering 3D ...
Wavefront encoding (WFE) with different cubic phase mask designs was investigated in engineering 3D ...
Wavefront encoding (WFE) with different cubic phase mask designs was investigated in engineering 3D ...
We tested the most complete optical model available for computational optical-sectioning microscopy ...
Performance investigation of improved extended depth-of-field microscopy achieved with point-spread ...
Performance investigation of improved extended depth-of-field microscopy achieved with point-spread ...
In this study, we evaluated a point-spread function (PSF) engineered using wave front encoding (WFE)...
In this study, we evaluated a point-spread function (PSF) engineered using wave front encoding (WFE)...
Experimentally determined point-spread functions (PSF) have been used routinely for reconstructions ...
We evaluated different phase mask designs for PSF engineering using wavefront encoding, to reduce th...
We evaluated different phase mask designs for PSF engineering using wavefront encoding, to reduce th...
We evaluated different phase mask designs for PSF engineering using wavefront encoding, to reduce th...