International audienceProjection and back-projection are the most computationally intensive parts in Computed Tomography (CT) reconstruction, and are essential to acceleration of CT reconstruction algorithms. Compared to back-projection, parallelization efficiency in projection is highly limited by racing condition and thread unsynchronization. In this paper, a strategy of Fixed Sampling Number Projection (FSNP) is proposed to ensure the operation synchronization in the ray-driven projection with Graphical Processing Unit (GPU). Texture fetching is also used utilized to further accelerate the interpolations in both projection and back-projection. We validate the performance of this FSNP approach using both simulated and real cone-beam CT da...
International audience—Model-based iterative reconstruction methods enable to improve the quality of...
Abstract Background For cone-b...
Abstract: In CBCT, image reconstruction is difficult to meet the requirements of the user real-time ...
Projection and back-projection are the most computationally intensive parts in Computed Tomography (...
Projection and back-projection are the most computationally intensive parts in Computed Tomography (...
The goal of this work is to develop a fast computed tomography (CT) reconstruction algorithm based o...
International audienceBack-Projection is the major algorithm in Computed Tomography to reconstruct i...
Abstract—Particular applications of computed tomography require high slice resolutions. The fastest ...
In X-ray computed tomography (CT) imaging, projections taken by a scanner are used to reconstruct th...
International audienceThe iterative reconstruction algorithms for X-ray CT image reconstruction suff...
Abstract—Filtered back-projection algorithms are widely used for the reconstruction of volumetric da...
[EN] In X-ray computed tomography (CT) iterative methods are more suitable for the reconstruction of...
Abstract Background Standard cone-beam computed tomography (CBCT) involves the acquisition of at lea...
AbstractIn X-ray computed tomography (CT) iterative methods are more suitable for the reconstruction...
Iterative tomographic reconstruction gets more and more into the focus of interest for x-ray compute...
International audience—Model-based iterative reconstruction methods enable to improve the quality of...
Abstract Background For cone-b...
Abstract: In CBCT, image reconstruction is difficult to meet the requirements of the user real-time ...
Projection and back-projection are the most computationally intensive parts in Computed Tomography (...
Projection and back-projection are the most computationally intensive parts in Computed Tomography (...
The goal of this work is to develop a fast computed tomography (CT) reconstruction algorithm based o...
International audienceBack-Projection is the major algorithm in Computed Tomography to reconstruct i...
Abstract—Particular applications of computed tomography require high slice resolutions. The fastest ...
In X-ray computed tomography (CT) imaging, projections taken by a scanner are used to reconstruct th...
International audienceThe iterative reconstruction algorithms for X-ray CT image reconstruction suff...
Abstract—Filtered back-projection algorithms are widely used for the reconstruction of volumetric da...
[EN] In X-ray computed tomography (CT) iterative methods are more suitable for the reconstruction of...
Abstract Background Standard cone-beam computed tomography (CBCT) involves the acquisition of at lea...
AbstractIn X-ray computed tomography (CT) iterative methods are more suitable for the reconstruction...
Iterative tomographic reconstruction gets more and more into the focus of interest for x-ray compute...
International audience—Model-based iterative reconstruction methods enable to improve the quality of...
Abstract Background For cone-b...
Abstract: In CBCT, image reconstruction is difficult to meet the requirements of the user real-time ...