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[Crossref]
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[Crossref]
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[Crossref]

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L. C. Ingesson, B. Alper, H. Chen, A. W. Edwards, G. C. Fehmers, J. C. Fuchs, R. Giannella, R. D. Gill, L. Lauro-Taroni, M. Romanelli, “Soft x-ray tomography during ELMs and impurity injection in JET,” Nucl. Fusion (to be published).

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[Crossref]
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L. C. Ingesson, B. Alper, H. Chen, A. W. Edwards, G. C. Fehmers, J. C. Fuchs, R. Giannella, R. D. Gill, L. Lauro-Taroni, M. Romanelli, “Soft x-ray tomography during ELMs and impurity injection in JET,” Nucl. Fusion (to be published).

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L. C. Ingesson, B. Alper, H. Chen, A. W. Edwards, G. C. Fehmers, J. C. Fuchs, R. Giannella, R. D. Gill, L. Lauro-Taroni, M. Romanelli, “Soft x-ray tomography during ELMs and impurity injection in JET,” Nucl. Fusion (to be published).

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[Crossref]
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[Crossref]

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[Crossref]
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[Crossref]

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[Crossref]

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[Crossref]

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L. C. Ingesson, B. Alper, H. Chen, A. W. Edwards, G. C. Fehmers, J. C. Fuchs, R. Giannella, R. D. Gill, L. Lauro-Taroni, M. Romanelli, “Soft x-ray tomography during ELMs and impurity injection in JET,” Nucl. Fusion (to be published).

L. C. Ingesson, P. J. Böcker, R. Reichle, M. Romanelli, P. Smeulders, “Projection-space methods to take into account finite beam-width effects in two-dimensional tomography algorithms,” (JET Joint Undertaking, Abingdon, UK, 1998).

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[Crossref]

L. C. Ingesson, B. Alper, H. Chen, A. W. Edwards, G. C. Fehmers, J. C. Fuchs, R. Giannella, R. D. Gill, L. Lauro-Taroni, M. Romanelli, “Soft x-ray tomography during ELMs and impurity injection in JET,” Nucl. Fusion (to be published).

L. C. Ingesson, R. Reichle, G. C. Fehmers, H. Guo, L. Lauro-Taroni, A. Loarte, R. Simonini, “Radiation distribution and neutral-particle loss in the JET MkI and MkIIA divertors,” in Proceedings of the 24th EPS Conference on Controlled Fusion and Plasma Physics, M. Schittenhelm, R. Bartiromo, F. Wagner, eds., Vol. 21A of Europhysics Conference Abstracts (European Physical Society, Mulhouse, France, 1997), Part 1, pp. 113–116.

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[Crossref]

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[Crossref]

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[Crossref]

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[Crossref]

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[Crossref]

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[Crossref]
[PubMed]

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[Crossref]
[PubMed]

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[Crossref]
[PubMed]

K. Ogawa, S. Paek, M. Nakajima, S. Yuta, A. Kubo, S. Hashimoto, “Correction of collimator aperture using a shift-variant deconvolution filter in gamma camera emission CT,” in Medical Imaging II, R. H. Schneider, S. J. Dwyer, eds., Proc. SPIE914, 699–706 (1988).

[Crossref]

K. Ogawa, S. Paek, M. Nakajima, S. Yuta, A. Kubo, S. Hashimoto, “Correction of collimator aperture using a shift-variant deconvolution filter in gamma camera emission CT,” in Medical Imaging II, R. H. Schneider, S. J. Dwyer, eds., Proc. SPIE914, 699–706 (1988).

[Crossref]

K. Ogawa, S. Paek, M. Nakajima, S. Yuta, A. Kubo, S. Hashimoto, “Correction of collimator aperture using a shift-variant deconvolution filter in gamma camera emission CT,” in Medical Imaging II, R. H. Schneider, S. J. Dwyer, eds., Proc. SPIE914, 699–706 (1988).

[Crossref]

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[PubMed]

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[Crossref]
[PubMed]

M. A. King, R. B. Schwinger, B. C. Penney, “Variation of the count-dependent Metz filter with imaging system modulation transfer function,” Med. Phys. 13, 139–149 (1985).

[Crossref]

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[Crossref]
[PubMed]

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[Crossref]

A. R. Formiconi, A. Pupi, A. Passeri, “Compensation of spatial system response in SPECT with conjugate gradient reconstruction technique,” Phys. Med. Biol. 34, 69–84 (1989).

[Crossref]
[PubMed]

A. G. Lindgren, P. A. Rattey, “The inverse discrete Radon transform with applications to tomographic imaging using projection data,” Adv. Electron. Electron Phys. 56, 359–410 (1981).

[Crossref]

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L. C. Ingesson, R. Reichle, G. C. Fehmers, H. Guo, L. Lauro-Taroni, A. Loarte, R. Simonini, “Radiation distribution and neutral-particle loss in the JET MkI and MkIIA divertors,” in Proceedings of the 24th EPS Conference on Controlled Fusion and Plasma Physics, M. Schittenhelm, R. Bartiromo, F. Wagner, eds., Vol. 21A of Europhysics Conference Abstracts (European Physical Society, Mulhouse, France, 1997), Part 1, pp. 113–116.

L. C. Ingesson, P. J. Böcker, R. Reichle, M. Romanelli, P. Smeulders, “Projection-space methods to take into account finite beam-width effects in two-dimensional tomography algorithms,” (JET Joint Undertaking, Abingdon, UK, 1998).

L. C. Ingesson, B. Alper, H. Chen, A. W. Edwards, G. C. Fehmers, J. C. Fuchs, R. Giannella, R. D. Gill, L. Lauro-Taroni, M. Romanelli, “Soft x-ray tomography during ELMs and impurity injection in JET,” Nucl. Fusion (to be published).

M. A. King, R. B. Schwinger, B. C. Penney, “Variation of the count-dependent Metz filter with imaging system modulation transfer function,” Med. Phys. 13, 139–149 (1985).

[Crossref]

L. C. Ingesson, R. Reichle, G. C. Fehmers, H. Guo, L. Lauro-Taroni, A. Loarte, R. Simonini, “Radiation distribution and neutral-particle loss in the JET MkI and MkIIA divertors,” in Proceedings of the 24th EPS Conference on Controlled Fusion and Plasma Physics, M. Schittenhelm, R. Bartiromo, F. Wagner, eds., Vol. 21A of Europhysics Conference Abstracts (European Physical Society, Mulhouse, France, 1997), Part 1, pp. 113–116.

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[Crossref]

R. Reichle, J. C. Fuchs, R. M. Giannella, N. A. C. Gottardi, H. J. Jäckel, K. F. Mast, P. R. Thomas, P. van Belle, “Bolometer for ITER,” in Diagnostics for Experimental Thermonuclear Fusion Reactors, P. E. Stott, G. Gorini, E. Sindoni, eds. (Plenum, New York, 1996), pp. 560–569, and references therein.

G. L. Zeng, G. T. Gullberg, B. M. W. Tsui, J. A. Terry, “Three-dimensional iterative reconstruction algorithms with attenuation and geometric point response correction,” IEEE Trans. Nucl. Sci. 38, 693–702 (1991).

[Crossref]

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[Crossref]
[PubMed]

R. Reichle, J. C. Fuchs, R. M. Giannella, N. A. C. Gottardi, H. J. Jäckel, K. F. Mast, P. R. Thomas, P. van Belle, “Bolometer for ITER,” in Diagnostics for Experimental Thermonuclear Fusion Reactors, P. E. Stott, G. Gorini, E. Sindoni, eds. (Plenum, New York, 1996), pp. 560–569, and references therein.

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[Crossref]

J. L. Prince, A. S. Willsky, “A geometric projection-space reconstruction algorithm,” Linear Algebr. Appl. 130, 151–191 (1990).

[Crossref]

R. M. Lewitt, P. R. Edholm, W. Xia, “Fourier method for correction of depth-dependent blurring,” in Medical Imaging III: Image Processing, R. H. Schneider, S. J. Dwyer, R. G. Jost, eds., Proc. SPIE1092, 232–243 (1989).

[Crossref]

K. Ogawa, S. Paek, M. Nakajima, S. Yuta, A. Kubo, S. Hashimoto, “Correction of collimator aperture using a shift-variant deconvolution filter in gamma camera emission CT,” in Medical Imaging II, R. H. Schneider, S. J. Dwyer, eds., Proc. SPIE914, 699–706 (1988).

[Crossref]

S. Miracle, M. J. Yzuel, S. Millán, “A study of the point spread function in scintillation camera collimators based on Fourier analysis,” Phys. Med. Biol. 24, 372–384 (1979).

[Crossref]
[PubMed]

Y.-L. Hsieh, G. T. Gullberg, G. L. Zeng, R. H. Huesman, “Image reconstruction using a generalized natural pixel basis,” IEEE Trans. Nucl. Sci. 43, 2306–2319 (1996).

[Crossref]

G. L. Zeng, G. T. Gullberg, B. M. W. Tsui, J. A. Terry, “Three-dimensional iterative reconstruction algorithms with attenuation and geometric point response correction,” IEEE Trans. Nucl. Sci. 38, 693–702 (1991).

[Crossref]

A. G. Lindgren, P. A. Rattey, “The inverse discrete Radon transform with applications to tomographic imaging using projection data,” Adv. Electron. Electron Phys. 56, 359–410 (1981).

[Crossref]

R. N. Bracewell, “Strip integration in radio astronomy,” Aust. J. Phys. 9, 198–217 (1956).

[Crossref]

J. R. Baker, T. F. Budinger, R. H. Huesman, “Generalized approach to inverse problems in tomography: image reconstruction for spatially variant systems using natural pixels,” Crit. Rev. Biomed. Eng. 20, 47–71 (1992).

[PubMed]

D. G. McCaughey, H. C. Andrews, “Degrees of freedom for projection imaging,” IEEE Trans. Acoust., Speech, Signal Process. ASSP-25, 63–73 (1977).

[Crossref]

M. H. Buonocore, W. R. Brody, A. Macovski, “A natural pixel decomposition for two-dimensional image reconstruction,” IEEE Trans. Biomed. Eng. BME-28, 69–78 (1981).

[Crossref]

S. J. Glick, P. C. Penney, M. A. King, C. L. Byrne, “Noniterative compensation for the distance-dependent detector response and photon attenuation in SPECT imaging,” IEEE Trans. Med. Imaging 13, 363–374 (1994).

[Crossref]
[PubMed]

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