dc.creatorde Armas Costa, Ricardo
dc.creatorRojas Cortés, Lucio
dc.creatorCastellanos Moreno, Fabio
dc.date.accessioned2021-03-09T17:33:35Z
dc.date.accessioned2022-09-28T20:52:47Z
dc.date.available2021-03-09T17:33:35Z
dc.date.available2022-09-28T20:52:47Z
dc.date.created2021-03-09T17:33:35Z
dc.identifierhttp://hdl.handle.net/10654/37438
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/3736492
dc.publisherUniversidad Militar Nueva Granada
dc.relationhttps://revistas.unimilitar.edu.co/index.php/rfcb/article/view/339/135
dc.relation/*ref*/Boman J. 1990. On generalized Radon transforms with unknown measures, Contemporary Mathematics, 113:5-15. 2. Bracewell R.N. 1995. Two-dimensional imaging. Eglewood Cliffs, NJ: Prentice-Hall. 3. Buzug T.M. 2008. Computed Tomography. From Photon Statistics to Modern Cone Beam CT. Leipzig, Germany: Springer. 4. Cormack A. M. 1963. Representation of a function by its line integrals, with some radiological applications. Journal of Applied Physics, 34:2722-2727. 5. Collette J. P. 1985. Historia de las matemáticas, Vol. I. Madrid: Siglo XXI. 6. Donson M. E., y Grünbaum F.A. 1981. Tomographic reconstructions with arbitrary directions. Comm. Pure and Applied Mathematics, 34:77-120. 7. Deans S. R. 1983. The Radon Transform and some of its applications. New York: John Wiley and Sons Inc. 8. Defrise M., y Guillberg G. T. 2006. Image Reconstruction. Physics in Medicine and Biology, 51:139-154. 9. Farrington B. 1979. Ciencia Griega. Barcelona: Icaria. 10. Falconer K. J. 1983. X-ray problems for point sources. Proceedings London Mathematical Society, 46:241-262. 11. Gordon R. 1975. Image processing for 2-D and 3-D reconstruction from projections: theory and practice in medicine and the physical sciences. Digest of technical papers, Stanford, California, August 4-7 (1975), Sponsored by the Optical Society of America. 12. Grinberg E. 1985. On images of Radon transforms. Duke Mathematical Journal, 52:939-972. 13. Gonzáles R.C., y Woods R.E. (2002). Digital Image Processing. New Jersey: Prentice-Hall. 14. Helgason S. 1980. The Radon Transform. Birkhäuser. Second Edition. 15. Herman, G. T. 1980. Image Reconstruction from Projections. The Fundamentals of Computarized Tomography. Academic Press. 16. Health T. 1981. A history of greek mathematics, Vol. I. New York: Dover. 17. Herman G.T. 2009. Fundamentals of Computarized Tomography: Image Reconstruction from Projections (Advances in Pattern Recognition). 2nd Ed, Springer. 18. Kak A. C., y Sallaney M. 1988. Principles of Computarized Tomography”. New York: IEEE press. 19. Kalender W. A. 2006. Computed Tomography: Fundamentals, System Technology, Image Quality, Apllications. Wiley. 20. Ludwig D. 1966. The Radon transform on Euclidean Space. Communications on Pure and Applied Mathematics, 23:49-81. 21. Macovski A. 1983. Medical imaging systems. Englewood Cliffs, NJ: Prentice- Hall. 22. Markoe A. 1986. Fourier inversion of the attenuated Radon transform. SIAM: SIAM Journal on Mathematical Analysis, to appear. 23. Natterer F. 1985. Fourier reconstruction in tomography. Numerische Mathematik, 47:343-353. 24. Matterer F. 1986. The Mathematics of Computarized Tomography”. New York: John Wiley&Sons. 25. Nievergelt Y. 1986. Elementary inversion of Radon’s transform. SIAM Reviews, 28:79-84. 26. Quinto E. T. 1980. The dependence of the generalized Radon transform defining measures. Transactions of the American Mathematical Society, 257:331–346. 27. Radon J. 1917. Über die Bestimmung von Funktionen durch ihre Ihre Integralwerte längs gewisser Mannigfaltigkeiten. Berichte Sächsische Akademie der Wissenschaften, Leipzig, Math-Phys. 69:262-277. 28. Radon J. 1986. On the Determination of Functions from Their Integral Values along Certain Manifolds. IEEE Transactions on Medical Imaging, 5:170–176. 29. Rey J., y Babini J. 1986. Historia de la matemática, Vol. I. Barcelona: Gedisa. 30. Shepp L. A., y Kruskal J.B. 1978. Computerized tomography: The new medical X – ray technology. The American Mathematical Monthly, 85:420-438. 31. Smith K.T. 1983. Reconstruction formulas in computed tomography. Proceedings of Symposia in Applied Mathematics (AMS), 27:7-23. 32. Smith K.T. 1984. Inversion of the X-ray transform. SIAM-AMS Proceedings, 14:41-52. 33. Symeonidis E. 1999. On the image of a generalized d-plane transform on ℝ!. Journal of Lie Theory, 9:39-68. 34. Thomas I. 1967. Greek Mathematics, Vol. I. London: W. Heinemann and Harvard Univ. 35. Wang G., y Vannier M. W. 1998. Computarized Tomography. Departament of Radiology. University of Iowa. Iowa 52242, Iowa City (USA).
dc.rightsDerechos de autor 2015 Revista Facultad de Ciencias Básicas
dc.rightshttps://creativecommons.org/licenses/by-nc-nd/4.0
dc.sourceRevista Facultad de Ciencias Básicas; Vol. 10 No. 1 (2014); 56-65
dc.sourceRevista Facultad de Ciencias Básicas; Vol. 10 Núm. 1 (2014); 56-65
dc.source2500-5316
dc.source1900-4699
dc.subjectProyecciones
dc.subjectTransformada de Radon
dc.subjectCoordenadas Cartesianas
dc.subjectCoordenadas Polares
dc.subjectSinograma
dc.titleEl Espacio de Radón y el Segundo Teorema de Thales de Mileto
dc.typeinfo:eu-repo/semantics/article
dc.typeinfo:eu-repo/semantics/publishedVersion


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