Tomography
Richard M. Leahy,
Richard M. Leahy
University of Southern California, Los Angeles, CA
Search for more papers by this authorRichard M. Leahy,
Richard M. Leahy
University of Southern California, Los Angeles, CA
Search for more papers by this authorFirst published: 27 December 1999
Abstract
The sections in this article are
- W4710.1 Theory
- W4710.2 Other Applications
- W4710.3 Recent and Potential Future Developments
Bibliography
- 1 H. H. Barrett W. Swindell Radiological Imaging, New York: Academic Press, 1981, Vols. I and II.
- 2 S. Webb From the Watching of Shadows: the Origins of Radiological Tomography, Institute of Physics Publishing, 1990.
- 3 J. Radon On the determination of functions from their integral values along certain manifolds, IEEE Trans. Med. Imag., MI-4: 170–176, 1986 (first published 1917 in German).
- 4 G. N. Hounsfield A method of and apparatus for examination of a body by radiation such as x-ray or gamma radiation, U.K. Patent Specification 1283915, The U.K. Patent Office, England, 1972.
- 5 B. Holtzmann Kevles Naked to the Bone: Medical Imaging in the Twentieth Century, Rutgers Univ. Press, 1996.
- 6
S. Webb (ed.)
The Physics of Medical Imaging,
London:
Institute of Physics,
1988.
10.1887/0852743491 Google Scholar
- 7 P. Lauterbur Image formation by induced local interactions: Examples employing nuclear magnetic resonance, Nature, 242 (5394): 190–191, 1973.
- 8 A. Kumar D. Welti R. Ernst NMR Fourier Zuegmatography, J. Mag. Reson., 18: 69–83, 1975.
- 9 Z. Zhou et al. Calculation of 3-D internal displacement fields from 3-D x-ray computer tomographic images, Proc. R. Soc. London Sec. A, 449: 537–554, 1995.
- 10 R. A. Crowther D. J. DeRosier A. Klug The reconstruction of three-dimensional structure from projections and its applications to electron microscopy, Proc. R. Soc. London Sec. A, 317: 319–340, 1970.
- 11 T. R. Corle G. S. Kino Confocal Scanning Optical Microscopy and Related Imaging Systems, New York: Academic Press, 1996.
- 12
R. N. Bracewell
Image reconstruction in radio astronomy,
in
G. T. Herman (ed.),
Image Reconstruction from Projections: Implementation and Applications,
New York:
Springer,
1979.
10.1007/3-540-09417-2_3 Google Scholar
- 13 K. Dines R. Lytle Computerized geophysical tomography, Proc. IEEE, 67: 1065–1073, 1979.
- 14 D. C. Munson, Jr. J. D. O'Brien W. K. Jenkins A tomographic formulation of spotlight-mode synthetic aperture radar, Proc. IEEE, 71: 917–925, 1983.
- 15 T. D. Raymund et al. Application of computerized tomography to the investigation of ionospheric structures, Radio Sci., 25: 771–789, 1990.
- 16 H. W. Jones Recent activity in ultrasonic tomography, Ultrasonics, 31 (4): 353–360, 1993.
- 17 A. Dziewonski J. Woodhouse Global images of the earth's interior, Science, 236 (4797): 37–48, 1987.
- 18 A. C. Kak M. Slaney Principles of Computerized Tomographic Imaging, New York: IEEE Press, 1988.
- 19 R. Merserau A. Oppenheim Digital reconstruction of multi-dimensional signals from their projections, Proc. IEEE, 62: 1319–1338, 1974.
- 20 L. A. Shepp B. F. Logan The Fourier reconstruction of a head section, IEEE Trans. Nucl. Sci., NS-21: 21–33, 1974.
- 21 H. P. Hiriyannaiah X-ray computed tomography, IEEE Signal Process. Mag., 14 (2): 42–59, 1997.
- 22 B. K. Horn Fan-beam reconstruction methods, Proc. IEEE, 67: 1616–1623, 1979.
- 23 G. T. Herman Image Reconstruction From Projections: The Fundamentals of Computerized Tomography, New York: Academic Press, 1980.
- 24 Y. Censor Finite series-expansion reconstruction methods, Proc. IEEE, 71: 409–419, 1983.
- 25 M. I. Sezan H. Stark Tomographic image reconstruction from incomplete view data by convex projections and direct Fourier inversion, IEEE Trans. Med. Imag., MI-3: 91–98, 1984.
- 26 D. M. Titterington General structure of regularization procedures in image reconstruction, Astron. Astrophys., 144: 381–387, 1985.
- 27
L. A. Shepp
Y. Vardi
Maximum likelihood reconstruction for emission tomography,
IEEE Trans. Med. Imag.,
MI-2:
113–122,
1982.
10.1109/TMI.1982.4307558 Google Scholar
- 28 S. Geman D. E. McClure Bayesian image analysis: An application to single photon emission tomography, Proc. Stat. Comput. Sec. Am. Stat. Assoc., 1985, pp. 12–18.
- 29 G. Gindi et al. Bayesian reconstruction of functional images using anatomical information as priors, IEEE Trans. Med. Imag., MI-12: 670–680, 1993.
- 30 E. U. Mumcuoglu et al. Fast gradient-based methods for Bayesian reconstruction of transmission and emission PET images, IEEE Trans. Med. Imag., MI-13: 687–701, 1994.
- 31 S. R. Cherry M. E. Phelps Imaging brain function with positron emission tomography, in A. W. Toga and J. C. Mazziotta (eds.), Brain Mapping: The Methods, New York: Academic Press, 1996.
- 32 J. Ollinger J. A. Fessler Positron emission tomography, IEEE Sign. Process. Mag., 14 (1): 43–55, 1997.
- 33 J. Qi et al. Fully 3D Bayesian image reconstruction for the ECAT EXACT HR+, IEEE Trans. Nucl. Sci., 45: 1096–1103, 1998.
- 34 B. R. Spies Electrical and electromagnetic borehole measurements: A review, Surveys Geophys., 17: 517–556, 1996.
- 35 J. P. Montagner Can seismology tell us anything about convection in the mantle?, Rev. Geophys., 32 (2): 115–137, 1994.
- 36 D. Townsend P. Kinahan (eds.) Physics in Medicine and Biology (Special Issue on Fully 3D Image Reconstruction), 43 (4): 1998.
Wiley Encyclopedia of Electrical and Electronics Engineering
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