Modeling of phase-contrast X-ray tomography imaging of medical samples
Matematičeskoe modelirovanie, Tome 24 (2012) no. 4, pp. 117-128.

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A computer code was created to calculate phase-contrast images of three dimensional objects. Developed code was used for modeling two tomography experiments with two different models of medical samples. Possibilities of practical applications of considered techniques are discussed based on the results of calculations.
Keywords: numerical modeling, X-ray optics, phase-contrast.
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S. V. Gasilov; I. V. Gasilova; S. V. Diachenko. Modeling of phase-contrast X-ray tomography imaging of medical samples. Matematičeskoe modelirovanie, Tome 24 (2012) no. 4, pp. 117-128. http://geodesic.mathdoc.fr/item/MM_2012_24_4_a8/

[1] Bushuev V. A., Ingal V. N., Belyaevskaya E. A., Kristallografiya, 43:4 (1998), 586–595

[2] Snigirev A., Snigireva I., Kohn V. et al., Rev. Sci. Instrum., 66:12 (1995), 5486 | DOI

[3] Ingal V. N., Beliaevskaya E. A., J. Phys. D, 28:10 (1995), 2314 | DOI

[4] Wilkins S. W., Gureyev T. E., Gao D. et al., Nature, 384 (1996), 335 | DOI

[5] Tikhonov A. N., Arsenin V. Ya., Timonov A. A., Matematicheskie zadachi kompyuternoi tomografii, Nauka, M., 1987, 160 pp. | MR

[6] Kak A. C., Slaney A., Principles of Computerized Tomographic Imaging, IEEE Press, 1988, 49 pp. | MR | Zbl

[7] Faris G. W., Byer R. L., Applied Optics, 27:24 (1988), 5202–5212 | DOI

[8] Goodman J. W., Introduction to Fourier Optics, 2ed., The McGraw Hill, 1996, 68 pp.

[9] Maximenko A., Appl. Phys. Lett., 90 (2007), 154106 | DOI

[10] Landau L. D., Livshits E. M., Elektrodinamika sploshnykh sred, Fizmatlit, M., 2005, 391 pp.