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1.
{9}{9}{m}Tc-MAG3 renogram deconvolution analysis as a diagnostic aid in kidney graft monitoring // Eur. J. Nucl. Med., 1994. Vol. 21, N 8.-С.766

2.
Vana N. Computer supported deconvolution of high temperature glow peaks in LiF thermoluminescence dosemeters // Radiat. Prot. Dosim., 1994. Vol. 51, N 3.-С.191-200

3.
Deconvolution analysis of renal blood flow: Evaluation of postrenal transplant complications // J. Nucl. Med., 1994. Vol. 35, N 11.-С.1792-1796

4.
Kempi V. Estimating the diagnostic yields resulting from renography and deconvolution parameters: A logistic regression analysis // J. Nucl. Med., 1995. Vol. 36, N 1.-С.147-152

5.
Comparison of three compartment analysis and deconvolutional one for the assessment of the liver function with Tc-99m PMT // J. Nucl. Med., 1994. Vol. 35, N 5 Suppl..-С.170

6.
Deconvolution of planar scintigrams by maximum entropy // Phys. Med. and Biol., 1995. Vol. 40, N 1.-С.153-162

7.
Validation of deconvolution analysis of LH secretion and half-life // Amer. J. Physiol., 1994. Vol. 267, N 1.-С.R202-R211

8.
Tomographic image reconstruction from optical projections in light-diffusing media // Appl. Opt., 1997. Vol. 36, N 1.-С.180-213

9.
Tomographic image reconstruction from optical projections in light-diffusing media // Appl. Opt., 1997. Vol. 36, N 1.-С.180-213

10.
Carlsen O. Direct deconvolution algorithms based on laplace transforms in nuclear medicine applications and with examples from renal studies // Eur. J. Nucl. Med., 2000. Vol. 27, N 8.-С.1094

11.
Carlsen O. Direct deconvolution algorithms based on laplace transforms in nuclear medicine applications and with examples from renal studies // Eur. J. Nucl. Med., 2000. Vol. 27, N 8.-С.1094

12.
Dynamic contrast-enhanced CT of head and neck tumors: Perfusion measurements using a distributed-parameter tracer kinetic model. Initial results and comparison with deconvolution-based analysis // Phys. Med. and Biol., 2007. Vol. 52, N 20.-С.6181-6196

13.
Dynamic contrast-enhanced CT of head and neck tumors: Perfusion measurements using a distributed-parameter tracer kinetic model. Initial results and comparison with deconvolution-based analysis // Phys. Med. and Biol., 2007. Vol. 52, N 20.-С.6181-6196

14.
Dynamic contrast-enhanced CT of head and neck tumors: Perfusion measurements using a distributed-parameter tracer kinetic model. Initial results and comparison with deconvolution-based analysis // Phys. Med. and Biol., 2007. Vol. 52, N 20.-С.6181-6196

15.
Extravascular background subtraction using deconvolution analysis of the renogram // Phys. Med. and Biol., 1988. Vol. 33, N 9.-С.1065-1073

16.
Kempi V. Deconvolution analysis of renograms obtained with simultaneously administered {9}{9}{m}Tc-DTPA and {1}{3}{1}I-Hippuran // Nuklearmedizin, 1988. Vol. 27, N 5.-С.188-194

17.
Deconvolution using orthogonal polynomials in nuclear medicine :A method for forming quantitative functional images from kinetic studies // IEEE Trans. Med. Imag., 1990. Vol. 9, N 1.-С.11-23

18.
Horowitz Y.S. Study of the annealing characteristics of LiF : Mg,Ti using computerised glow curve deconvolution // Radiat. Prot. Dosim., 1990. Vol. 33, N 1-4.-С.255-258

19.
Peto A. Kinetic analysis of Al[2]O[3]:Mg, Y glow curves // Radiat. Prot. Dosim., 1990. Vol. 33, N 1-4.-С.103-106

20.
Horowitz Y.S. Relative thermoluminescent efficiency of LiF : Cu, Mg, P to alpha particles: Theory and experiment // Radiat. Prot. Dosim., 1990. Vol. 33, N 1-4.-С.287-290

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