Optoacoustic tomography has recently demonstrated powerful performance in small animal imaging and initial clinical trials in terms of the high spatial resolution, versatile contrast, and dynamic imaging capabilities it can provide. Yet, the current optoacoustic image reconstruction methods are usually based on inaccurate forward modelling approaches or otherwise demand a high computational cost, which imposes certain practical limitations and hinders image quantification. Herein, we introduce a new method for accelerating optoacoustic reconstructions, based on angular image discretization of the forward model solution. The method is particularly suitable for accurate image reconstruction with arbitrary meshes and space-dependent resolution...
In optoacoustic (photoacoustic) tomography, several parameters related to tissue and detector featur...
Acoustic heterogeneities in biological samples are known to cause artefacts in tomographic optoacous...
The majority of optoacoustic reconstruction algorithms are based on the assumption that the speed of...
Purpose: Image quantification in optoacoustic tomography implies the use of accurate forward models ...
In many practical optoacoustic imaging implementations, dimensionality of the tomographic problem is...
Optimal optoacoustic tomographic sampling is often hindered by the frequency-dependent directivity o...
Analytical (closed-form) inversion schemes have been the standard approach for image reconstruction ...
In order to achieve real-time image rendering, optoacoustic tomography reconstructions are commonly ...
Image quality in 3-D optoacoustic (photoacoustic) tomography is greatly influenced by both the measu...
Iterative model-based algorithms are known to enable more accurate and quantitative optoacoustic (ph...
Iterative model-based algorithms are known to enable more accurate and quantitative optoacoustic (ph...
We describe a novel discretization procedure for model-based inversion in twodimensional optoacousti...
We present a fast inversion algorithm for quantitative two- and three-dimensional optoacoustic tomog...
PURPOSE: Optoacoustic imaging enables mapping the optical absorption of biological tissue using opti...
Optoacoustic imaging offers the unique capability of simultaneous excitation of a three-dimensional ...
In optoacoustic (photoacoustic) tomography, several parameters related to tissue and detector featur...
Acoustic heterogeneities in biological samples are known to cause artefacts in tomographic optoacous...
The majority of optoacoustic reconstruction algorithms are based on the assumption that the speed of...
Purpose: Image quantification in optoacoustic tomography implies the use of accurate forward models ...
In many practical optoacoustic imaging implementations, dimensionality of the tomographic problem is...
Optimal optoacoustic tomographic sampling is often hindered by the frequency-dependent directivity o...
Analytical (closed-form) inversion schemes have been the standard approach for image reconstruction ...
In order to achieve real-time image rendering, optoacoustic tomography reconstructions are commonly ...
Image quality in 3-D optoacoustic (photoacoustic) tomography is greatly influenced by both the measu...
Iterative model-based algorithms are known to enable more accurate and quantitative optoacoustic (ph...
Iterative model-based algorithms are known to enable more accurate and quantitative optoacoustic (ph...
We describe a novel discretization procedure for model-based inversion in twodimensional optoacousti...
We present a fast inversion algorithm for quantitative two- and three-dimensional optoacoustic tomog...
PURPOSE: Optoacoustic imaging enables mapping the optical absorption of biological tissue using opti...
Optoacoustic imaging offers the unique capability of simultaneous excitation of a three-dimensional ...
In optoacoustic (photoacoustic) tomography, several parameters related to tissue and detector featur...
Acoustic heterogeneities in biological samples are known to cause artefacts in tomographic optoacous...
The majority of optoacoustic reconstruction algorithms are based on the assumption that the speed of...