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1.
3D histomorphometric quantification of tabecular bones by computed microtomography using synchrotron radiation // Micron, 2010. Vol. 41, N 8.-С.990-996

2.
3D histomorphometric quantification of tabecular bones by computed microtomography using synchrotron radiation // Micron, 2010. Vol. 41, N 8.-С.990-996

3.
A cine K-edge subtraction angiographic system for animal studies // Rev. Sci. Instrum., 1989. Vol. 60, N 7.-С.2272-2275

4.
A compact hard X-ray source for medical imaging and biomolecular studies // Nucl. Instrum. and Meth. Phys. Res. B, 1995. Vol. 99, N 1-4.-С.821-823

5.
A direct-coupled detector for synchrotron X-radiation using a large format CCD // IEEE Trans Nucl Sci, 1991. Vol. 38, N 2.-С.110-118

6.
A high precision, high speed X-ray detector for the noninvasive coronary angiography with synchrotron radiation // Nucl. Instrum. and Meth. Rhys. Res. A, 1991. Vol. 310, N 1-2.-С.446-448

7.
A method of dosimetry for synchrotron microbeam radiation therapy using radiochromic films of different sensitivity // Phys. Med. and Biol., 2008. Vol. 53, N 23.-С.6861-6877

8.
A simplified edge illumination set-up for quantitative phase contrast mammography with synhrotron tadiation at clinical doses // Phys. Med. and Biol., 2015. Vol. 60, N 3.-С.21-34

9.
A synchrotron radiation microprobe for X-ray fluorescence and mikrotomography at ELETTRA. Applications in life science // Ist. naz. fis nucl., 1989, N 5.-С.1-11

10.
Accessing osteocyte lacunar geometrical properties in human jaw bone on the submicron length scale using synchrotron radiation 'мю'CT // J. Microsc., 2014. Vol. 255, N 3.-С.158-168

11.
Accessing osteocyte lacunar geometrical properties in human jaw bone on the submicron length scale using synchrotron radiation 'мю'CT // J. Microsc., 2014. Vol. 255, N 3.-С.158-168

12.
An investigation of the potential of optical computed tomography for imaging of synchrotron-generated x-rays at high spatial resolution // Phys. Med. and Biol., 2010. Vol. 55, N 5.-С.1531-1547

13.
Analyser-based phase contrast image reconstruction using geometrical optics // Phys. Med. and Biol., 2007. Vol. 52, N 14.-С.4171-4187

14.
Analyser-based phase contrast image reconstruction using geometrical optics // Phys. Med. and Biol., 2007. Vol. 52, N 14.-С.4171-4187

15.
Analysis of cortical bone porosity using synchrotron radiation microtomography to evaluate the effects of chemotherapy // Radiat. Phys. and Chem., 2015. Vol. 116.-С.252-256

16.
Ando A. NewSUBARU storage ring // J. Biomed. Nanotechnol., 2006. Vol. 2, N 2.-С.83-85

17.
Antoinassi M. Study of electron densities of normal and neoplastic human breast tissues by Compton scattering using synchrotron radiation // Appl. Radiat. and Isotop., 2012. Vol. 70, N 7.-С.1351-1354

18.
Antoinassi M. Study of electron densities of normal and neoplastic human breast tissues by Compton scattering using synchrotron radiation // Appl. Radiat. and Isotop., 2012. Vol. 70, N 7.-С.1351-1354

19.
Application of linear discriminant analysis in prostate cancer research by synchrotron radiation-induced X-ray emission // Anal. Chem., 2007. Vol. 79, N 17.-С.6670-6674

20.
Application of the improved area detector for continuous small angle X-ray scattering using synchrotron radiation // Nucl. Instrum. and Meth. Phys. Res. A, 1991. Vol. 310, N 1-2.-С.403-410

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