Bibliografia SART

[KS88] Avinash C. Kak and Malcolm Slaney. Principles of Computerized Tomographic Imaging. IEEE Press, 1988. [ bib ]
[AK84] A. H. Andersen and A. C. Kak. Simultaneous algebraic reconstruction technique (sart). Ultrason.Img., vol.6: 81-94, 1984. [ bib ]
[FSH01] Jr. F. S. Hill. Computer Graphics Using OpenGL. Prentice Hall International Editions, second edition, 2001. [ bib ]
[XM05] Fang Xu and Klaus Mueller. Accelerating popular tomographic reconstruction algorithms on commodity PC graphics hardware. IEEE Transactions on Nuclear Science, 52(3), Junio 2005. [ bib ]
[MY99] Klaus Mueller and Roni Yagel. On the use of graphics hardware to accelerate algebraic reconstruction methods. In Proceedings of SPIE Medical Imaging Conference, 1999. [ bib ]
[MYW99] Klaus Mueller, Roni Yagel, and John J. Wheller. Fast implementations of algebraic methods for three-dimensional reconstruction from cone-beam data. IEEE Transactions on Medical Imaging, 18(6), 1999. [ bib ]
[MOS01] Mark Mitchell, Jeffrey Oldham, and Alex Samuel. Advanced Linux Programming. New Riders Publishing, 2001. [ bib ]
[NVI07] NVIDIA. CUDA Programming Guide 0.8.2, 2007. [ bib ]
[NVI05] NVIDIA. GPU Gems 2: Programming Techniques for High-Performance Graphics and General-Purpose Computation. 2005. [ bib ]
[Sor02] Carlos Óscar Sánchez Sorzano. Algoritmos Iterativos de Tomografía Tridimensional en Microscopía Electrónica de Transmisión. PhD thesis, Universidad de Málaga, 2002. [ bib ]
[SMVM+04] C. O. S. Sorzano, R. Marabini, J. Velazquez-Muriel, J. R. Bilbao-Castro, S. H. W. Scheres, J. M. Carazo, and A. Pascual-Montana. Xmipp: a new generation of an open-source image processing package for electron microscopy. Journal of Structural Biology, 148(2):194-204, 2004. [ bib ]
[MMM+96] R. Marabini, I. M. Masegosa, M. C. San Martín, S. Marco, J. J. Fernández, L. G. de la Fraga, C. Vaquerizo, and J. M. Carazo. Xmipp: An image processing package for electron microscopy. Journal of Structural Biology, 116:237-240, 1996. [ bib ]
[MHC98] R. Marabini, G. T. Herman, and J. M. Carazo. 3D reconstruction in electron microscopy using ART with smooth spherically symmetric volume elements (blobs). Ultramicroscopy, 72:53-65, 1998. [ bib ]
[Tan71] K. Tanabe. Projection method for solving a singular system. Numer. Math., 17:203-214, 1971. [ bib ]
[Wil00] Matthew Willis. Algebraic reconstruction algorithms for remote sensing image enhancement. Master's thesis, Department of Electrical and Computer Engineering, BYU University, 2000. [ bib ]
[Xmi] Xmipp wiki. http://xmipp.cnb.csic.es/. [ bib ]
[UCS] UCSF Chimera home page. http://www.cgl.ucsf.edu/chimera/. [ bib ]
[NVI] NVIDIA. NVIDIA CUDA homepage. http://developer.nvidia.com/object/cuda.html. [ bib ]
[CLRS01] Thomas H. Cormen, Charles E. Leiserson, Ronald L. Rivest, and Clifford Stein. Introduction to Algorithms. The MIT Press, 2001. [ bib ]
[GA97] Luis Merino González and Evangelina Santos Aláez. Álgebra lineal con métodos elementales. Thomson Paraninfo, 1997. [ bib ]
[Str97] Bjarne Stroustroup. The C++ Programming Language. Addison-Wesley Publishing Company, 1997. [ bib ]
[GG94] H. Guan and R. Gordon. A projection access order for speedy convergence of ART (algebraic reconstruction technique): a multilevel scheme for computed tomography. Physics in Medicine and Biology, (39):2005-2022, 1994. [ bib ]
[SMB+01] C. O. S. Sorzano, R. Marabini, N. Boisset, E. Rietzel, R. Schroder, G. T. Herman, and J. M. Carazo. The effect of overabundant projection directions on 3D reconstruction algorithms. Journal of Structural Biology, 2001. [ bib ]

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