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Discrete Tomography in MRI : a Simulation Study

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Discrete tomography (DT) is concerned with the tomographic reconstruction of images that consist of only a small number of grey levels. Recently, DART, a practical algorithm was introduced for discrete tomography, which was validated in the domain of X-ray computed and electron tomography. In this paper, DART is introduced for magnetic resonance imaging. Using simulation experiments, it is shown that the proposed MRI-DART algorithm is capable of computing high quality reconstructions from substantially fewer data compared to state-of-the-art MRI reconstruction methods.
Wydawca
Rocznik
Strony
223--237
Opis fizyczny
Bibliogr. 23 poz., rys., wykr.
Twórcy
autor
  • iMinds - Vision Lab, University of Antwerp, Belgium
  • iMinds - Vision Lab, University of Antwerp, Belgium
  • Centrum voor Wiskunde en Informatica, Amsterdam, The Netherlands
autor
  • iMinds - Vision Lab, University of Antwerp, Belgium
Bibliografia
  • [1] Bals, S., Batenburg, K. J., Liang, D., Lebedev, O., Van Tendeloo, G., Aerts, A., Martens, J. A., Kirschhock, C. E. A.: Quantitative three-dimensional modeling of zeotile through discrete electron tomography, Journal of the American Chemical Society, 131(13), 2009, 4769-4773.
  • [2] Bals, S., Batenburg, K. J., Verbeeck, J., Sijbers, J., Van Tendeloo, G.: Quantitative three-dimensional reconstruction of catalyst particles for bamboo-like carbon nanotubes, Nano Letters, 7(12), 2007, 3669-3674.
  • [3] Barreiro, P., Ortiz, C., Ruiz-Altisent, M., Ruiz-Cabello, J., Fernandez-Valle, M. E., Recasens, I., Asensio, M.: Mealiness assessment in apples and peaches using MRI techniques, Magnetic Resonance Imaging, 18(9), 2000, 1175-1181.
  • [4] Batenburg, K. J., Bals, S., Sijbers, J., Kubel, C., Midgley, P. A., Hernandez, J. C., Kaiser, U., Encina, E. R., Coronado, E. A., Van Tendeloo, G.: 3D imaging of nanomaterials by discrete tomography, Ultramicroscopy, 109(6), 2009, 730-740.
  • [5] Batenburg, K. J., Sijbers, J.: Discrete tomography from micro-CT data: application to the mouse trabecular bone structure, Proceedings ofSPIE Medical Imaging: Physics of Medical Imaging, 6142, February 2006, 1325-1335.
  • [6] Batenburg, K. J., Sijbers, J.: DART: A practical reconstruction algorithm for discrete tomography, IEEE Transactions on Image Processing, 20(9), sept. 2011, 2542-2553.
  • [7] Batenburg, K. J., Sijbers, J., Poulsen, H. F., Knudsen, E.: DART: a robust algorithm for fast reconstruction of 3D grain maps, Journal of Applied Crystallography, 43, 2010, 1464-1473.
  • [8] Block, K. T., Uecker, M., Frahm, J.: Undersampled radial MRI with multiple coils. Iterative image reconstruction using a total variation constraint, Magnetic Resonance in Medicine, 57(6), 2007, 1086-1098.
  • [9] Candes, E. J., Wakin, M. B.: An introduction to compressive sampling, IEEE Signal Processing Magazine, 25(2), march 2008, 21-30.
  • [10] Chartrand, R.: Fast algorithms for nonconvex compressive sensing: MRI reconstruction from very few data, Proceedings of ISBI International Society of Biomedical Imaging, July 2009, 262-265.
  • [11] El-Baz, A., Elnakib, A., Khalifa, F., El-Ghar, M. A., McClure, P., Soliman, A., Gimelfarb, G.: Precise segmentation of 3-D magnetic resonance angiography, IEEE Transactions on Biomedical Engineering, 59(7), July 2012, 2019-2029.
  • [12] Elson, E. M., Jones, A., King, R., Chapman, P., Stanek, J., Irvine, A. T., Bingham, J. B.: Magnetic resonance imaging of trilucent TM breast implants, Clinical Radiology, 57(4), 2002, 263-267.
  • [13] Feng, Y., Liu, P., Li, B., Yu, L., Chen, W.: Improved reconstruction of non-cartesian magnetic resonance imaging data through total variation minimization and POCS optimization, Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC), sept. 2009, 2676-2679.
  • [14] Holmich, L. R., Vejborg, I., Conrad, C., Sletting, S., McLaughlin, J. K.: The diagnosis of breast implant rupture: MRI findings compared with findings at explantation, European Journal of Radiology, 53(2), 2005, 213-225.
  • [15] Lustig, M., Donoho, D., Pauly, J. M.: Sparse MRI: The application of compressed sensing for rapid MR imaging, Magnetic Resonance in Medicine, 58(6), 2007, 1182-1195.
  • [16] Lustig, M., Donoho, D. L., Santos, J. M., Pauly, J. M.: Compressed Sensing MRI, IEEE Signal Processing Magazine, 25(2), march 2008, 72-82.
  • [17] Madhuranthakam, A. J., Smith, M. P., Yu, H., Shimakawa, A., Reeder, S. B., Rofsky, N. M., McKenzie, C. A., Brittain, J. H.: Water-silicone separated volumetric MR acquisition for rapid assessment of breast implants, Journal of Magnetic Resonance Imaging, 35(5), May 2012, 1216-1221.
  • [18] Otsu, N.: A Threshold Selection Method from Gray-Level Histograms, IEEE Transactions on Systems, Man and Cybernetics, 9(1), 1979, 62-66.
  • [19] Paige, C. C., Saunders, M. A.: LSQR: An algorithm for sparse linear equations and sparse least squares, ACM Transactions on Mathematical Software (TOMS), 8(1), 1982, 43-71.
  • [20] Roelandts, T., Batenburg, K. J., Biermans, E., Kubel, C., Bals, S., Sijbers, J.: Accurate segmentation of dense nanoparticles by partially discrete electron tomography, Ultramicroscopy, 114, 2012, 96-105.
  • [21] Van Gompel, G., Batenburg, K. J., Van de Casteele, E., Van Aarle, W., Sijbers, J.: A discrete tomography approach for superresolution micro-CT images, Proceedings of ISBI International Society of Biomedical Imaging, April 2010, 816-819.
  • [22] Weisenfeld, N. I., Mewes, A. J. U., Warfield, S. K.: Highly accurate segmentation of brain tissue and subcortical gray matter from newborn MRI, MICCAI, 2006, 199-206.
  • [23] Wu, X.-L., Gai, J., Lam, F., Fu, M., Haldar, J. P., Zhuo, Y., Liang, Z.-P., Hwu, W.-M., Sutton, B. P.: Impatient MRI: Illinois Massively Parallel Acceleration Toolkit for image reconstruction with enhanced throughput in MRI, Proceedings of ISBI International Society of Biomedical Imaging, 2011, 69-72.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-acf01e49-6873-45e7-94cd-f2beff8bdbda
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