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1.
A comparison of three methods for the determination of regional myocardial blood flow (rMBF) by {8}{2}Rb PET // Eur. J Nucl. Med., 1993. Vol. 20, N 10.-С.883

2.
A detailed model of [1-{1}{1}C]-acetate kinetic in aerobic tissue: Implications for assessing myocardial viability with dynamic PET // Eur. J. Nucl. Med., 1994. Vol. 21, N 8.-С.764

3.
A method for correcting myocardium to blood pool spillover in dynamic cardiac PET FDG studies // J. Nucl. Med., 1992. Vol. 33, N 5 Suppl..-С.882

4.
A model-constrained Monte Carlo method for blind arterial input function estimation in dynamic contrast-enhanced MRI II: In vivo results // Phys. Med. and Biol., 2010. Vol. 55, N 16.-С.4807-4823

5.
A modeling approach for separation of blood time activity curves of labeled metabolites (MET) in quantitative tracer PET studies // J. Nucl. Med., 1990. Vol. 31, N 5 suppl..-С.708

6.
A new myocardial imaging method by factor analysis using H[2]{1}{5}O and dynamic PET without a blood pool scan // J. Nucl. Med., 1990. Vol. 31, N 5 suppl..-С.861-862

7.
A new myocardial imaging method using factor analysis with H[2]{1}{5}O and dynamic positron emission tomography // Eur. J. Nucl. Med., 1989. Vol. 15, N 8.-С.440

8.
A quantitative model for PET study of the interactions between GCP 12177 and 'бета'-adrenergic receptors // Eur. J. Nucl. Med., 1989. Vol. 15, N 8.-С.555

9.
A refined method for quantification of myocardial oxygen consumption using mean transit time with C-11 acetate and dynamic PET // J. Nucl. Med., 1993. Vol. 34, N 5 Suppl..-С.183

10.
A straight, explicit and easy to understand analytical deduction of the Gjedde-Patlak equation // Eur. J. Nucl. Med., 1993. Vol. 20, N 10.-С.989

11.
A strategy for tomographic mapping of kinetic rate constants using I-123 IMP and dynamic SPECT // J. Nucl. Med., 1989. Vol. 30, N 5 Suppl..-С.805-806

12.
An analysis of thoracic and abdominal tumour motion for stereotactic body radiotherapy patients // Phys. Med. and Biol., 2008. Vol. 53, N 13.-С.3623-3640

13.
An analysis of thoracic and abdominal tumour motion for stereotactic body radiotherapy patients // Phys. Med. and Biol., 2008. Vol. 53, N 13.-С.3623-3640

14.
An automated blood sampling system used in fast dynamic function studies of the brain with positron emission tomography (PET) // Nuklearmed.. -Stuttgart, New York, 1988.-С.15-18

15.
An investigation into the effect of input function shape and image acquisition interval on estimates of washin for dynamic cardiac SPECT // Phys. Med. and Biol., 1997. Vol. 42, N 11.-С.2193-2213

16.
An investigation into the effect of input function shape and image acquisition interval on estimates of washin for dynamic cardiac SPECT // Phys. Med. and Biol., 1997. Vol. 42, N 11.-С.2193-2213

17.
Attenuation corrected regional cerebral blood flow changes (rCBF) using {9}{9}{m}Tc-HMPAO in subcortical structures following complex partial seizures (CPS) and tonic seizures (TS) // Austral. and N. Z. J. Med., 1992. Vol. 22, N 4.-С.411

18.
Automated image registration for FDOPA PET studies // Phys. Med. and Biol., 1996. Vol. 41, N 12.-С.2775-2788

19.
Automated image registration for FDOPA PET studies // Phys. Med. and Biol., 1996. Vol. 41, N 12.-С.2775-2788

20.
Automated three-dimensional cardiac displacement correction for dynamic cardiac PET studies // Eur. J. Nucl. Med., 1993. Vol. 20, N 10.-С.990

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