Proposed is an exact shift-invariant filtered backprojection algorithm for the circle-and-arc trajectory. The algorithm has several important features. First, it allows for the circle to be incomplete. Second, axial truncation of the cone beam data is allowed. Third, the length of the arc is determined only by the region of interest and is independent of the size of the entire object. The algorithm is quite flexible and can be used for even more general trajectories that consist of several circular segments and arcs. The algorithm applies also in the case when the circle (or, circles) is complete. A numerical experiment with the clock phantom demonstrated good image quality
X-ray 3D rotational angiography based on C-arm systems has become a versatile and established tomogr...
X-ray 3D rotational angiography based on C-arm systems has become a versatile and established tomogr...
Proposed is a theoretically exact formula for inversion of data obtained by a spiral computed tomogr...
Proposed is an exact shift-invariant filtered backprojection algorithm for the circle-and-arc trajec...
Proposed is an exact shift-invariant filtered backprojection algorithm for the circle-and-arc trajec...
We propose an exact shift-invariant filtered backprojection algorithm for inversion of the cone beam...
We develop an exact filtered backprojection (FBP) algorithm for a general class of circle-plus traje...
Methods, apparatus and systems for an exact filtered back projection process for circle-plus traject...
Methods, apparatus and systems for an exact filtered back projection process for circle-plus traject...
Methods, systems and processes for providing efficient, accurate and exact image reconstruction usin...
We derive an approximate reconstruction algorithm for the 3D imaging system, which is a backprojecti...
We investigate image reconstruction with a circle and line trajectory with a tilted gantry. We deriv...
Previous algorithms for recovering 3D geometry from uncalibrated circular motion image sequences of ...
We propose an exact filtered backprojection algorithm for inversion of the cone beam data in the cas...
We investigate image reconstruction with a circle and line trajectory with a tilted gantry. We deriv...
X-ray 3D rotational angiography based on C-arm systems has become a versatile and established tomogr...
X-ray 3D rotational angiography based on C-arm systems has become a versatile and established tomogr...
Proposed is a theoretically exact formula for inversion of data obtained by a spiral computed tomogr...
Proposed is an exact shift-invariant filtered backprojection algorithm for the circle-and-arc trajec...
Proposed is an exact shift-invariant filtered backprojection algorithm for the circle-and-arc trajec...
We propose an exact shift-invariant filtered backprojection algorithm for inversion of the cone beam...
We develop an exact filtered backprojection (FBP) algorithm for a general class of circle-plus traje...
Methods, apparatus and systems for an exact filtered back projection process for circle-plus traject...
Methods, apparatus and systems for an exact filtered back projection process for circle-plus traject...
Methods, systems and processes for providing efficient, accurate and exact image reconstruction usin...
We derive an approximate reconstruction algorithm for the 3D imaging system, which is a backprojecti...
We investigate image reconstruction with a circle and line trajectory with a tilted gantry. We deriv...
Previous algorithms for recovering 3D geometry from uncalibrated circular motion image sequences of ...
We propose an exact filtered backprojection algorithm for inversion of the cone beam data in the cas...
We investigate image reconstruction with a circle and line trajectory with a tilted gantry. We deriv...
X-ray 3D rotational angiography based on C-arm systems has become a versatile and established tomogr...
X-ray 3D rotational angiography based on C-arm systems has become a versatile and established tomogr...
Proposed is a theoretically exact formula for inversion of data obtained by a spiral computed tomogr...