FFT-based approach to longitudinal interpolation in single- and multi-slice helical CT
Presents an approach to single- and multi-slice helical computed tomography (CT) image reconstruction that exploits the fast Fourier transform (FFT) and the Fourier shift theorem to generate from the helical projection data a set of fan-beam sinograms corresponding to equispaced transverse slices. S...
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| Veröffentlicht in: | 1999 IEEE Nuclear Science Symposium. Conference Record. 1999 Nuclear Science Symposium and Medical Imaging Conference (Cat. No.99CH37019) Jg. 3; S. 1588 - 1592 vol.3 |
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| Format: | Tagungsbericht |
| Sprache: | Englisch |
| Veröffentlicht: |
IEEE
1999
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| ISBN: | 9780780356962, 0780356969 |
| ISSN: | 1082-3654 |
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| Abstract | Presents an approach to single- and multi-slice helical computed tomography (CT) image reconstruction that exploits the fast Fourier transform (FFT) and the Fourier shift theorem to generate from the helical projection data a set of fan-beam sinograms corresponding to equispaced transverse slices. Slice-by-slice reconstruction is then performed by use of two-dimensional (2D) fan-beam algorithms. A natural extension of the approach allows the redundancy of fan-beam data acquired over 360/spl deg/ to be exploited to decrease the effective longitudinal sampling interval. The approach is found to perform best at pitch 1 for the single-slice case and pitch 3 for the multi-slice case, when its sampling conditions are well satisfied, yielding high-quality transverse images and longitudinal aliasing and resolution properties superior to those of standard approaches based on linear interpolation. |
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| AbstractList | Presents an approach to single- and multi-slice helical computed tomography (CT) image reconstruction that exploits the fast Fourier transform (FFT) and the Fourier shift theorem to generate from the helical projection data a set of fan-beam sinograms corresponding to equispaced transverse slices. Slice-by-slice reconstruction is then performed by use of two-dimensional (2D) fan-beam algorithms. A natural extension of the approach allows the redundancy of fan-beam data acquired over 360/spl deg/ to be exploited to decrease the effective longitudinal sampling interval. The approach is found to perform best at pitch 1 for the single-slice case and pitch 3 for the multi-slice case, when its sampling conditions are well satisfied, yielding high-quality transverse images and longitudinal aliasing and resolution properties superior to those of standard approaches based on linear interpolation. |
| Author | La Riviere, P.J. Xiaochuan Pan |
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| PublicationTitle | 1999 IEEE Nuclear Science Symposium. Conference Record. 1999 Nuclear Science Symposium and Medical Imaging Conference (Cat. No.99CH37019) |
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| Snippet | Presents an approach to single- and multi-slice helical computed tomography (CT) image reconstruction that exploits the fast Fourier transform (FFT) and the... |
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| StartPage | 1588 |
| SubjectTerms | Computed tomography Detectors Fast Fourier transforms Geometry Image reconstruction Image resolution Image sampling Interpolation Radiology Sampling methods |
| Title | FFT-based approach to longitudinal interpolation in single- and multi-slice helical CT |
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