For a multilayered specimen, the back-scattered signal in frequency-domain optical-coherence tomography (FDOCT) is expressible as a sum of cosines, each corresponding to a change of refractive index in the specimen. Each of the cosines represent a peak in the reconstructed tomogram. We consider a truncated cosine series representation of the signal, with the constraint that the coefficients in the basis expansion be sparse. An l(2) (sum of squared errors) data error is considered with an l(1) (summation of absolute values) constraint on the coefficients. The optimization problem is solved using Weiszfeld's iteratively reweighted least squares (IRLS) algorithm. On real FDOCT data, improved results are obtained over the standard reconstructio...
We address the problem of phase retrieval, which is frequently encountered in optical imaging. The m...
Session: Optical Processing & AlgorithmsTopical Meeting: Signal Recovery & Synthesis (SRS)We cast th...
We address the problem of high-resolution reconstruction in frequency-domain optical-coherence tomog...
We address the reconstruction problem in frequency-domain optical-coherence tomography (FDOCT) from ...
We address the reconstruction problem in frequency-domain optical-coherence tomography (FDOCT) from ...
We propose and study an iterative sparse reconstruction for Fourier domain optical coherence tomogra...
We address the problem of reconstructing a sparse signal from its DFT magnitude. We refer to this pr...
We address the problem of reconstructing a sparse signal from its DFT magnitude. We refer to this pr...
We address the issue of noise robustness of reconstruction techniques for frequency-domain optical...
We address the issue of noise robustness of reconstruction techniques for frequency-domain optical...
We address the issue of noise robustness of reconstruction techniques for frequency-domain optical-c...
The standard approach to signal reconstruction in frequency-domain optical-coherence tomography (FDO...
The standard approach to signal reconstruction in frequency-domain optical-coherence tomography (FDO...
In this work, we use inverse imaging for object reconstruction from nonuniformly-spaced samples in F...
We address the problem of phase retrieval, which is frequently encountered in optical imaging. The m...
We address the problem of phase retrieval, which is frequently encountered in optical imaging. The m...
Session: Optical Processing & AlgorithmsTopical Meeting: Signal Recovery & Synthesis (SRS)We cast th...
We address the problem of high-resolution reconstruction in frequency-domain optical-coherence tomog...
We address the reconstruction problem in frequency-domain optical-coherence tomography (FDOCT) from ...
We address the reconstruction problem in frequency-domain optical-coherence tomography (FDOCT) from ...
We propose and study an iterative sparse reconstruction for Fourier domain optical coherence tomogra...
We address the problem of reconstructing a sparse signal from its DFT magnitude. We refer to this pr...
We address the problem of reconstructing a sparse signal from its DFT magnitude. We refer to this pr...
We address the issue of noise robustness of reconstruction techniques for frequency-domain optical...
We address the issue of noise robustness of reconstruction techniques for frequency-domain optical...
We address the issue of noise robustness of reconstruction techniques for frequency-domain optical-c...
The standard approach to signal reconstruction in frequency-domain optical-coherence tomography (FDO...
The standard approach to signal reconstruction in frequency-domain optical-coherence tomography (FDO...
In this work, we use inverse imaging for object reconstruction from nonuniformly-spaced samples in F...
We address the problem of phase retrieval, which is frequently encountered in optical imaging. The m...
We address the problem of phase retrieval, which is frequently encountered in optical imaging. The m...
Session: Optical Processing & AlgorithmsTopical Meeting: Signal Recovery & Synthesis (SRS)We cast th...
We address the problem of high-resolution reconstruction in frequency-domain optical-coherence tomog...