We present a novel method which provides X-ray CT users the flexibility to reconstruct an object along any of its internal flat features. This internal feature, which is generally not parallel to the object's external surface, can be either an interface between two materials or one surface of an internal layer. This method is developed based on our existing CT differential reconstruction algorithm that is achieved by modifying the popular Feldkamp-Davis-Kress cone-beam reconstruction technique. The theory of this technology is described. One case-study demonstrates that this method is independent of the surface selection of several parallel features. Another case-study shows its capability to reconstruct any individual plate along the plate...
A new family of cone-beam reconstruction algorithm, the General Surface Reconstruction (GSR), is pro...
This thesis addresses the problem of reconstructing static objects in 2D and 3D transmission com-put...
FDK algorithm is a well-known 3D (three-dimensional) approximate algorithm for CT (computed tomograp...
In this paper, a Feldkamp type approximate reconstruction algorithm is presented for helical cone-be...
An approximate image reconstruction method for gantry tiled multi slice computed tomography (MSCT) i...
Most existing differential phase-contrast computed tomography (DPC-CT) approaches are based on three...
Cone-beam computed tomography (CT) with circular scanning trajectory is known to suffer from so call...
An approximation image reconstruction method for spiral cone-beam computed tomography (CT), called t...
articleInternational audienceCone-beam (CB) acquisition is increasingly used for truly three-dimensi...
3-dimensional computerised tomography is usually reconstructed using the naïve Feldkamp-Davis-Kress ...
We present an efficient and accurate reconstruction technique for computed tomography (CT) images fr...
Cone-beam (CB) acquisition is increasingly used for truly three-dimensional X-ray computerized tomog...
Thesis (Ph. D.)--University of Rochester. Dept. of Electrical and Computer Engineering, 2008.X-ray C...
International audienceCone beam x-ray tomography is based on the aquisition of two-dimensional proje...
Modern computed tomography (CT) scanners use cone-beam configurations for increasing volume coverage...
A new family of cone-beam reconstruction algorithm, the General Surface Reconstruction (GSR), is pro...
This thesis addresses the problem of reconstructing static objects in 2D and 3D transmission com-put...
FDK algorithm is a well-known 3D (three-dimensional) approximate algorithm for CT (computed tomograp...
In this paper, a Feldkamp type approximate reconstruction algorithm is presented for helical cone-be...
An approximate image reconstruction method for gantry tiled multi slice computed tomography (MSCT) i...
Most existing differential phase-contrast computed tomography (DPC-CT) approaches are based on three...
Cone-beam computed tomography (CT) with circular scanning trajectory is known to suffer from so call...
An approximation image reconstruction method for spiral cone-beam computed tomography (CT), called t...
articleInternational audienceCone-beam (CB) acquisition is increasingly used for truly three-dimensi...
3-dimensional computerised tomography is usually reconstructed using the naïve Feldkamp-Davis-Kress ...
We present an efficient and accurate reconstruction technique for computed tomography (CT) images fr...
Cone-beam (CB) acquisition is increasingly used for truly three-dimensional X-ray computerized tomog...
Thesis (Ph. D.)--University of Rochester. Dept. of Electrical and Computer Engineering, 2008.X-ray C...
International audienceCone beam x-ray tomography is based on the aquisition of two-dimensional proje...
Modern computed tomography (CT) scanners use cone-beam configurations for increasing volume coverage...
A new family of cone-beam reconstruction algorithm, the General Surface Reconstruction (GSR), is pro...
This thesis addresses the problem of reconstructing static objects in 2D and 3D transmission com-put...
FDK algorithm is a well-known 3D (three-dimensional) approximate algorithm for CT (computed tomograp...