Forward and adjoint Monte Carlo (MC) models of radiance are proposed for use in model-based quantitative photoacoustic tomography. A two-dimensional (2-D) radiance MC model using a harmonic angular basis is introduced and validated against analytic solutions for the radiance in heterogeneous media. A gradient-based optimization scheme is then used to recover 2-D absorption and scattering coefficients distributions from simulated photoacoustic measurements. It is shown that the functional gradients, which are a challenge to compute efficiently using MC models, can be calculated directly from the coefficients of the harmonic angular basis used in the forward and adjoint models. This work establishes a framework for transport-based quantitativ...
We present, perhaps for the first time, a stochastic search algorithm in quantitative photoacoustic ...
International audienceThis paper proposes a multigrid inversion framework for quantitative photoacou...
Quantitative photoacoustic tomography (QPAT) is a hybrid biomedical imaging technique that derives i...
Forward and adjoint Monte Carlo (MC) models of radiance are proposed for use in model-based quantita...
In quantitative photoacoustic imaging, the aim is to recover physiologically relevant tissue paramet...
In this paper, we present a numerical reconstruction method for quantitative photoacoustic tomograph...
International audienceWe present for the first time the simultaneous reconstruction of three optical...
The objective of quantitative photoacoustic tomography (QPAT) is to reconstruct optical and thermody...
Quantitative photoacoustic tomography is an emerging imaging technique aimed at estimating the distr...
The development of accurate and efficient image reconstruction algorithms is a central aspect of qua...
In this work, use of perturbation Monte Carlo is extended to solving inverse problem of quantitative...
Quantitative photo-acoustic tomography (QPAT) seeks to reconstruct a distribution of optical attenu...
Quantitative photoacoustic tomography aims to recover maps of the local concentrations of tissue chr...
We present, perhaps for the first time, a stochastic search algorithm in quantitative photoacoustic ...
SIGNIFICANCE: The image reconstruction problem in quantitative photoacoustic tomography (QPAT) is an...
We present, perhaps for the first time, a stochastic search algorithm in quantitative photoacoustic ...
International audienceThis paper proposes a multigrid inversion framework for quantitative photoacou...
Quantitative photoacoustic tomography (QPAT) is a hybrid biomedical imaging technique that derives i...
Forward and adjoint Monte Carlo (MC) models of radiance are proposed for use in model-based quantita...
In quantitative photoacoustic imaging, the aim is to recover physiologically relevant tissue paramet...
In this paper, we present a numerical reconstruction method for quantitative photoacoustic tomograph...
International audienceWe present for the first time the simultaneous reconstruction of three optical...
The objective of quantitative photoacoustic tomography (QPAT) is to reconstruct optical and thermody...
Quantitative photoacoustic tomography is an emerging imaging technique aimed at estimating the distr...
The development of accurate and efficient image reconstruction algorithms is a central aspect of qua...
In this work, use of perturbation Monte Carlo is extended to solving inverse problem of quantitative...
Quantitative photo-acoustic tomography (QPAT) seeks to reconstruct a distribution of optical attenu...
Quantitative photoacoustic tomography aims to recover maps of the local concentrations of tissue chr...
We present, perhaps for the first time, a stochastic search algorithm in quantitative photoacoustic ...
SIGNIFICANCE: The image reconstruction problem in quantitative photoacoustic tomography (QPAT) is an...
We present, perhaps for the first time, a stochastic search algorithm in quantitative photoacoustic ...
International audienceThis paper proposes a multigrid inversion framework for quantitative photoacou...
Quantitative photoacoustic tomography (QPAT) is a hybrid biomedical imaging technique that derives i...