We present an effective, fast, and straightforward phase aberration compensation method in digital holographic microscopy based on principal component analysis. The proposed method decomposes the phase map into a set of values of uncorrelated variables called principal components, and then extracts the aberration terms from the first principal component obtained. It is effective, fully automatic, and does not require any prior knowledge of the object and the setup. The great performance and limited computational complexity make our approach a very attractive and promising technique for compensating phase aberration in digital holography under time-critical environments.Published versio
Quantitative phase imaging (QPI) via Digital Holographic microscopy (DHM) has been widely applied in...
This works presents a reconstruction algorithm to recover the complex object information for an off-...
This paper is focused on improving the performance of quantitative phase imaging via phase-shifting ...
We demonstrate a digital holographic microscope platform for phase imaging of micron scale samples. ...
Digital Holography Microscopy (DHM) is a powerful tool for three-dimensional imaging of micro-object...
<p> We present a simple and fast phase aberration compensation method in digital holographic micros...
In this paper we present a new method to achieve quantitative phase contrast imaging in Digital Holo...
In digital holographic microscopy (DHM) a hologram is captured in the image space provided by a micr...
Digital Holographic Microscopy (DHM) is a powerful imaging technique allowing, from a single amplitu...
In digital holographic microscopy, if an optical setup is well aligned, the phase curvature introduc...
In this study, we proposed a simple and fast numerical approach to compensate for aberrations induce...
Digital holographic microscopy (DHM) is a promising tool for a three-dimensional imaging of microsco...
Digital holographic microscopy (DHM) is a topographic measurement technique that permits full-field,...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2012.Phase aberrations due to atmosph...
In phase-shifting digital holographic microscopy (PS-DHM), the reconstructed phase map is obtained a...
Quantitative phase imaging (QPI) via Digital Holographic microscopy (DHM) has been widely applied in...
This works presents a reconstruction algorithm to recover the complex object information for an off-...
This paper is focused on improving the performance of quantitative phase imaging via phase-shifting ...
We demonstrate a digital holographic microscope platform for phase imaging of micron scale samples. ...
Digital Holography Microscopy (DHM) is a powerful tool for three-dimensional imaging of micro-object...
<p> We present a simple and fast phase aberration compensation method in digital holographic micros...
In this paper we present a new method to achieve quantitative phase contrast imaging in Digital Holo...
In digital holographic microscopy (DHM) a hologram is captured in the image space provided by a micr...
Digital Holographic Microscopy (DHM) is a powerful imaging technique allowing, from a single amplitu...
In digital holographic microscopy, if an optical setup is well aligned, the phase curvature introduc...
In this study, we proposed a simple and fast numerical approach to compensate for aberrations induce...
Digital holographic microscopy (DHM) is a promising tool for a three-dimensional imaging of microsco...
Digital holographic microscopy (DHM) is a topographic measurement technique that permits full-field,...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2012.Phase aberrations due to atmosph...
In phase-shifting digital holographic microscopy (PS-DHM), the reconstructed phase map is obtained a...
Quantitative phase imaging (QPI) via Digital Holographic microscopy (DHM) has been widely applied in...
This works presents a reconstruction algorithm to recover the complex object information for an off-...
This paper is focused on improving the performance of quantitative phase imaging via phase-shifting ...