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1.
Validation of the 4D NCAT simulation tools for use in high-resolution x-ray CT research // Proc. SPIE, 2005. Vol. 5745.-С.828-834

2.
Validation of the 4D NCAT simulation tools for use in high-resolution x-ray CT research // Proc. SPIE, 2005. Vol. 5745.-С.828-834

3.
Frey E.C. Use of the information content of scattered photons in SPECT by simultaneous reconstruction from multiple energy windows // J. Nucl. Med., 1994. Vol. 35, N 5 Suppl..-С.17

4.
Song N. The effect of volume-of-interest misregistration on quantitative planar activity and dose estimation // Phys. Med. and Biol., 2010. Vol. 55, N 18.-С.5483-5497

5.
Song N. The effect of volume-of-interest misregistration on quantitative planar activity and dose estimation // Phys. Med. and Biol., 2010. Vol. 55, N 18.-С.5483-5497

6.
Simultaneous improvement in image quality and absolute quantitative accuracy in cardiac SPECT // J. Nucl. Med., 1990. Vol. 31, N 5 Suppl..-С.738

7.
Reconstruction methods for quantitative brain SPECT // IEEE Trans. Nucl. Sci., 1993. Vol. 40, N 2.-С.214-220

8.
Quantitative {111}In ProstaScint{R} SPECT imaging and fusion with anatomical CT images // J. Nucl. Med., 2002. Vol. 43, N 5 прил..-С.54P

9.
Quantitative {111}In ProstaScint{R} SPECT imaging and fusion with anatomical CT images // J. Nucl. Med., 2002. Vol. 43, N 5 прил..-С.54P

10.
Quantitative {111}In ProstaScint{R} SPECT imaging and fusion with anatomical CT images // J. Nucl. Med., 2002. Vol. 43, N 5 прил..-С.54P

11.
Tsui B.M.W. Quantitative SPECT reconstruction methods // Ann. Biomed. Eng., 1995. Vol. 23, Suppl. N1.-С.65

12.
Tsui B.M.W. Quantitative SPECT reconstruction methods // Ann. Biomed. Eng., 1995. Vol. 23, Suppl. N1.-С.65

13.
Quantitative comparison of extended dual photon window and iterative reconstruction based scatter compensation // J. Nucl. Med., 1993. Vol. 34, N 5 Suppl..-С.72-73

14.
Pitfalls of attenuation compensation and their remedies in cardiac SPECT // J. Nucl. Med., 1994. Vol. 35, N 5 Suppl..-С.115

15.
Performance evaluation of compact detectors based on new pixellated NaI(Tl) crystal arrays for high-resolution small animal imaging // J. Nucl. Med., 2002. Vol. 43, N 5 прил..-С.59P

16.
Frey E.C. Parameterization of the scatter response function in SPECT imaging using Monte Carlo simulation // IEEE Trans. Nucl. Sci., 1990. Vol. 37, N 3.-С.1308-1315

17.
He X. Optimal observer framework and categorization observer framework for three-class ROC analysis // Proc. SPIE, 2006. Vol. 6146.-С.61460B/1-61460B/9

18.
Frey E.C. Modeling the scatter response function in inhomogeneous scattering media for SPECT // IEEE Trans. Nucl. Sci, 1994. Vol. 41, N 4.-С.1585- 1593

19.
Frey E.C. Modeling the effects of composition and inhomogeneity of scattering media on the scatter response function in SPECT // J. Nucl. Med., 1993. Vol. 34, N 5 Suppl..-С.72

20.
Model-based crosstalk compensation in simultaneous {99m}Tc and {123}I dual isotope imaging // J. Nucl. Med., 2002. Vol. 43, N 5 прил..-С.53P

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