We describe a noniterative method for recovering optical absorption coefficient distribution from the absorbed energy map reconstructed using simulated and noisy boundary pressure measurements. The source reconstruction problem is first solved for the absorbed energy map corresponding to single- and multiple-source illuminations from the side of the imaging plane. It is shown that the absorbed energy map and the absorption coefficient distribution, recovered from the single-source illumination with a large variation in photon flux distribution, have signal-to-noise ratios comparable to those of the reconstructed parameters from a more uniform photon density distribution corresponding to multiple-source illuminations. The absorbed energy map...
Thesis (Ph.D.)--University of Washington, 2013Photoacoustic tomography is a rapidly developing medic...
Photoacoustic tomography (PAT) is a hybrid imaging method, which combines ultrasonic and optical ima...
This paper is concerned with the stability issue in determining absorption and diffusion coefficient...
We describe a noniterative method for recovering optical absorption coefficient distribution from th...
The inverse problem in photoacoustic tomography (PAT) seeks to obtain the absorbed energy map from t...
The objective of quantitative photoacoustic tomography (QPAT) is to reconstruct optical and thermody...
We treat the stability issue for the three-dimensional inverse imaging modality called quantitative ...
We present, perhaps for the first time, a stochastic search algorithm in quantitative photoacoustic ...
We present, perhaps for the first time, a stochastic search algorithm in quantitative photoacoustic ...
In photo-acoustic imaging, energy absorption causes thermo-elastic expansion of optical absorbers, w...
In this paper, we present a numerical reconstruction method for quantitative photoacoustic tomograph...
We propose a combined reconstruction-classification method for simultaneously recovering absorption ...
Diffuse optical tomography and photoacoustic tomography were combined to measure the optical absorpt...
Quantitative photoacoustic tomography is an emerging imaging technique aimed at estimating optical p...
The reconstruction of photoacoustic images typically neglects the effect of acoustic absorption on t...
Thesis (Ph.D.)--University of Washington, 2013Photoacoustic tomography is a rapidly developing medic...
Photoacoustic tomography (PAT) is a hybrid imaging method, which combines ultrasonic and optical ima...
This paper is concerned with the stability issue in determining absorption and diffusion coefficient...
We describe a noniterative method for recovering optical absorption coefficient distribution from th...
The inverse problem in photoacoustic tomography (PAT) seeks to obtain the absorbed energy map from t...
The objective of quantitative photoacoustic tomography (QPAT) is to reconstruct optical and thermody...
We treat the stability issue for the three-dimensional inverse imaging modality called quantitative ...
We present, perhaps for the first time, a stochastic search algorithm in quantitative photoacoustic ...
We present, perhaps for the first time, a stochastic search algorithm in quantitative photoacoustic ...
In photo-acoustic imaging, energy absorption causes thermo-elastic expansion of optical absorbers, w...
In this paper, we present a numerical reconstruction method for quantitative photoacoustic tomograph...
We propose a combined reconstruction-classification method for simultaneously recovering absorption ...
Diffuse optical tomography and photoacoustic tomography were combined to measure the optical absorpt...
Quantitative photoacoustic tomography is an emerging imaging technique aimed at estimating optical p...
The reconstruction of photoacoustic images typically neglects the effect of acoustic absorption on t...
Thesis (Ph.D.)--University of Washington, 2013Photoacoustic tomography is a rapidly developing medic...
Photoacoustic tomography (PAT) is a hybrid imaging method, which combines ultrasonic and optical ima...
This paper is concerned with the stability issue in determining absorption and diffusion coefficient...