يعرض 1 - 20 نتائج من 48 نتيجة بحث عن '"automatic treatment"', وقت الاستعلام: 0.49s تنقيح النتائج
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    Academic Journal
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    Academic Journal
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    Academic Journal

    المصدر: Biomedicines; Volume 9; Issue 2; Pages: 214

    وصف الملف: application/pdf

    Relation: Cancer Biology and Therapeutics; https://dx.doi.org/10.3390/biomedicines9020214

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    المؤلفون: Bellotti, Renato

    المساهمون: Bellotti, Renato, Willmann, Jonas, Lomax, Antony J., Adelmann, Andreas, Weber, Damien C., Hrbacek, Jan

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    المساهمون: UCL - SSS/IREC/MIRO - Pôle d'imagerie moléculaire, radiothérapie et oncologie, UCL - Faculté de pharmacie et des sciences biomédicales, Sterpin, Edmond, Geets, Xavier, Lee, John, Guillaume, Janssens, VanElmpt, Wouter, Knopf, Antje, Lambrecht, Maarten, Machiels, Jean-Pascal

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    المؤلفون: Bellotti, Renato

    المساهمون: Bellotti, Renato, Willmann, Jonas, Lomax, Antony J., Adelmann, Andreas, Weber, Damien C., Hrbacek, Jan

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    Academic Journal
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    Academic Journal
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    Conference

    المساهمون: Institut des Sciences Cognitives (ISC), Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-Centre National de la Recherche Scientifique (CNRS), Laboratoire Lorrain de Recherche en Informatique et ses Applications (LORIA), Institut National de Recherche en Informatique et en Automatique (Inria)-Université de Lorraine (UL)-Centre National de la Recherche Scientifique (CNRS)

    المصدر: Actes du colloque TALN'94, 7-8 avril 1994 ; https://shs.hal.science/halshs-00003807 ; Actes du colloque TALN'94, 7-8 avril 1994, Apr 1994, pp.134-150

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    Academic Journal

    المؤلفون: Rouillard, José

    المساهمون: Groupe d'étude sur l'oral et le dialogue (GEOD), Communication Langagière et Interaction Personne-Système (CLIPS - IMAG), Université Joseph Fourier - Grenoble 1 (UJF)-Institut National Polytechnique de Grenoble (INPG)-Centre National de la Recherche Scientifique (CNRS)-Université Joseph Fourier - Grenoble 1 (UJF)-Institut National Polytechnique de Grenoble (INPG)-Centre National de la Recherche Scientifique (CNRS)

    المصدر: ISSN: 0758-6787 ; Bulletin de linguistique appliquée et générale ; https://inria.hal.science/hal-02439942 ; Bulletin de linguistique appliquée et générale, 2001, Traitement Automatique des Langues et Internet, 26, pp.16.

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    Academic Journal
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    المصدر: IET control theory & applications
    (2019): 1–8. doi:10.1049/iet-cps.2018.5035
    info:cnr-pdr/source/autori:Giovanna Sannino, Ivanoe De Falco, Giuseppe De Pietro/titolo:Towards a Cyber-Physical System for Personalized and Automatic OSA Treatment/doi:10.1049%2Fiet-cps.2018.5035/rivista:IET control theory & applications (Print)/anno:2019/pagina_da:1/pagina_a:8/intervallo_pagine:1–8/volume
    IET Cyber-Physical Systems (2018)

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    Academic Journal

    المساهمون: Department of Industrial and Operations Engineering, University of Michigan, Ann Arbor, Michigan 48109‐2117, Department of Radiation Medicine and Applied Sciences and Center for Advanced Radiotherapy Technologies, University of California San Diego, La Jolla, California 92037‐0843 and Department of Radiation Oncology, University of Texas Southwestern Medical Center, Dallas, Texas 75390‐8542, Department of Radiation Medicine and Applied Sciences and Center for Advanced Radiotherapy Technologies, University of California San Diego, La Jolla, California 92037‐0843

    وصف الملف: application/pdf

    Relation: Zarepisheh, Masoud; Long, Troy; Li, Nan; Tian, Zhen; Romeijn, H. Edwin; Jia, Xun; Jiang, Steve B. (2014). "A DVH‐guided IMRT optimization algorithm for automatic treatment planning and adaptive radiotherapy replanning." Medical Physics 41(6): n/a-n/a.; https://hdl.handle.net/2027.42/135098; Medical Physics; S. M. Morrill, R. G. Lane, J. A. Wong, and I. I. Rosen, “ Dose‐volume considerations with linear programming optimization,” Med. Phys. 18, 1201 – 1210 ( 1991 ). 10.1118/1.596592; M. J. Williams, M. Bailey, D. Forstner, and P. E. Metcalfe, “ Multicentre quality assurance of intensity‐modulated radiation therapy plans: A precursor to clinical trials,” Australas. Radiol. 51, 472 – 479 ( 2007 ). 10.1111/j.1440‐1673.2007.01873.x; I. J. Das, C.‐W. Cheng, K. L. Chopra, R. K. Mitra, S. P. Srivastava, and E. Glatstein, “ Intensity‐modulated radiation therapy dose prescription, recording, and delivery: Patterns of variability among institutions and treatment planning systems,” J. Natl. Cancer Inst. 100, 300 – 307 ( 2008 ). 10.1093/jnci/djn020; H. T. Chung, B. Lee, E. Park, J. J. Lu, and P. Xia, “ Can all centers plan intensity‐modulated radiotherapy (IMRT) effectively? an external audit of dosimetric comparisons between three‐dimensional conformal radiotherapy and IMRT for adjuvant chemoradiation for gastric cancer,” Int. J. Radiat. Oncol., Biol., Phys. 71, 1167 – 1174 ( 2008 ). 10.1016/j.ijrobp.2007.11.040; S. Breedveld, P. R. M. Storchi, M. Keijzer, A. W. Heemink, and B. J. M. Heijmen, “ A novel approach to multi‐criteria inverse planning for IMRT,” Phys. Med. Biol. 52, 6339 – 6353 ( 2007 ). 10.1088/0031‐9155/52/20/016; S. Breedveld, P. R. M. Storchi, and B. J. M. Heijmen, “ The equivalence of multi‐criteria methods for radiotherapy plan optimization,” Phys. Med. Biol. 54, 7199 – 7209 ( 2009 ). 10.1088/0031‐9155/54/23/011; S. Breedveld, P. R. M. Storchi, P. W. J. Voet, and B. J. M. Heijmen, “ iCycle: Integrated, multicriterial beam angle, and profile optimization for generation of coplanar and noncoplanar IMRT plans,” Med. Phys. 39, 951 – 963 ( 2012 ). 10.1118/1.3676689; P. W. J. Voet, M. L. P. Dirkx, S. Breedveld, D. Fransen, P. C. Levendag, and B. J. M. Heijmen, “ Toward fully automated multicriterial plan generation: A prospective clinical study,” Int. J. Radiat. Oncol., Biol., Phys. 85, 866 – 872 ( 2013 ). 10.1016/j.ijrobp.2012.04.015; X. Zhang, X. Li, E. M. Quan, X. Pan, and Y. Li, “ A methodology for automatic intensity‐modulated radiation treatment planning for lung cancer,” Phys. Med. Biol. 56, 3873 – 3893 ( 2011 ). 10.1088/0031‐9155/56/13/009; V. Chanyavanich, S. K. Das, W. R. Lee, and J. Y. Lo, “ Knowledge‐based IMRT treatment planning for prostate cancer,” Med. Phys. 38, 2515 – 2522 ( 2011 ). 10.1118/1.3574874; B. Wu, F. Ricchetti, G. Sanguineti, M. Kazhdan, P. Simari, R. Jacques, R. Taylor, and T. McNutt, “ Data‐driven approach to generating achievable dose–volume histogram objectives in intensity‐modulated radiotherapy planning,” Int. J. Radiat. Oncol., Biol., Phys. 79, 1241 – 1247 ( 2011 ). 10.1016/j.ijrobp.2010.05.026; D. Yan, F. Vicini, J. Wong, and A. Martinez, “ Adaptive radiation therapy,” Phys. Med. Biol. 42, 123 – 132 ( 1997 ). 10.1088/0031‐9155/42/1/008; R. Mohan, X. Zhang, H. Wang, Y. Kang, X. Wang, H. Liu, K. K. Ang, D. Kuban, and L. Dong, “ Use of deformed intensity distributions for on‐line modification of image‐guided IMRT to account for interfractional anatomic changes,” Int. J. Radiat. Oncol., Biol., Phys. 61, 1258 – 1266 ( 2005 ). 10.1016/j.ijrobp.2004.11.033; L. E. Court, L. Dong, A. K. Lee, R. Cheung, M. D. Bonnen, J. O’Daniel, H. Wang, R. Mohan, and D. Kuban, “ An automatic CT‐guided adaptive radiation therapy technique by online modification of multileaf collimator leaf positions for prostate cancer,” Int. J. Radiat. Oncol., Biol., Phys. 62, 154 – 163 ( 2005 ). 10.1016/j.ijrobp.2004.09.045; Y. Feng, C. Castro‐Pareja, R. Shekhar, and C. Yu, “ Direct aperture deformation: An interfraction image guidance strategy,” Med. Phys. 33, 4490 – 4498 ( 2006 ). 10.1118/1.2374675; L. E. Court, R. B. Tishler, J. Petit, R. Cormack, and L. Chin, “ Automatic online adaptive radiation therapy techniques for targets with significant shape change: A feasibility study,” Phys. Med. Biol. 51, 2493 – 2501 ( 2006 ). 10.1088/0031‐9155/51/10/009; A. Mestrovic, M.‐P. Milette, A. Nichol, B. G. Clark, and K. Otto, “ Direct aperture optimization for online adaptive radiation therapy,” Med. Phys. 34, 1631 – 1646 ( 2007 ). 10.1118/1.2719364; E. E. Ahunbay, C. Peng, G.‐P. Chen, S. Narayanan, C. Yu, C. Lawton, and X. A. Li, “ An on‐line replanning scheme for interfractional variations,” Med. Phys. 35, 3607 – 3615 ( 2008 ). 10.1118/1.2952443; E. E. Ahunbay, C. Peng, A. Godley, C. Schultz, and X. A. Li, “ An on‐line replanning method for head and neck adaptive radiotherapy,” Med. Phys. 36, 4776 – 4790 ( 2009 ). 10.1118/1.3215532; Q. J. Wu, D. Thongphiew, Z. Wang, B. Mathayomchan, V. Chankong, S. Yoo, W. R. Lee, and F.‐F. Yin, “ On‐line re‐optimization of prostate IMRT plans for adaptive radiation therapy,” Phys. Med. Biol. 53, 673 – 691 ( 2008 ). 10.1088/0031‐9155/53/3/011; C. Men, X. Jia, and S. B. Jiang, “ GPU‐based ultra‐fast direct aperture optimization for online adaptive radiation therapy,” Phys. Med. Biol. 55, 4309 – 4319 ( 2010 ). 10.1088/0031‐9155/55/15/008; M. Langer and J. Leong, “ Optimization of beam weights under dose‐volume restrictions,” Int. J. Radiat. Oncol., Biol., Phys. 13, 1255 – 1260 ( 1987 ). 10.1016/0360‐3016(87)90203‐3; M. Langer, R. Brown, M. Urie, J. Leong, M. Stracher, and J. Shapiro, “ Large scale optimization of beam weights under dose‐volume restrictions,” Int. J. Radiat. Oncol., Biol., Phys. 18, 887 – 893 ( 1990 ). 10.1016/0360‐3016(90)90413‐E; Y. Censor, M. D. Altschuler, and W. D. Powlis, “ On the use of Cimmino’s simultaneous projections method for computing a solution of the inverse problem in radiation therapy treatment planning,” Inverse Probl. 4, 607 – 623 ( 1988 ). 10.1088/0266‐5611/4/3/006; P. S. Cho, S. Lee, R. J. M. Ii, S. Oh, S. G. Sutlief, and M. H. Phillips, “ Optimization of intensity modulated beams with volume constraints using two methods: Cost function minimization and projections onto convex sets,” Med. Phys. 25, 435 – 443 ( 1998 ). 10.1118/1.598218; S. V. Spirou and C. S. Chui, “ A gradient inverse planning algorithm with dose‐volume constraints,” Med. Phys. 25, 321 – 321 ( 1998 ). 10.1118/1.598202; D. Michalski, Y. Xiao, Y. Censor, and J. M. Galvin, “ The dose–volume constraint satisfaction problem for inverse treatment planning with field segments,” Phys. Med. Biol. 49, 601 – 616 ( 2004 ). 10.1088/0031‐9155/49/4/010; H. E. Romeijn, R. K. Ahuja, J. F. Dempsey, and A. Kumar, “ A new linear programming approach to radiation therapy treatment planning problems,” Operations Res. 54, 201 – 216 ( 2006 ). 10.1287/opre.1050.0261; Y. Zhang and M. Merritt, “ Dose‐volume‐based IMRT fluence optimization: A fast least‐squares approach with differentiability,” Linear Algebra Appl. 428, 1365 – 1387 ( 2008 ). 10.1016/j.laa.2007.09.037; M. Zarepisheh, M. Shakourifar, G. Trigila, P. S. Ghomi, S. Couzens, A. Abebe, L. Noreña, W. Shang, S. B. Jiang, and Y. Zinchenko, “ A moment‐based approach for DVH‐guided radiotherapy treatment plan optimization,” Phys. Med. Biol. 58, 1869 – 1887 ( 2013 ). 10.1088/0031‐9155/58/6/1869; C. Cotrutz and L. Xing, “ Using voxel‐dependent importance factors for interactive DVH‐based dose optimization,” Phys. Med. Biol. 47, 1659 – 1669 ( 2002 ). 10.1088/0031‐9155/47/10/304; C. Cotrutz and L. Xing, “ IMRT dose shaping with regionally variable penalty scheme,” Med. Phys. 30, 544 – 544 ( 2003 ). 10.1118/1.1556610; C. Wu, G. H. Olivera, R. Jeraj, H. Keller, and T. R. Mackie, “ Treatment plan modification using voxel‐based weighting factors/dose prescription,” Phys. Med. Biol. 48, 2479 – 2491 ( 2003 ). 10.1088/0031‐9155/48/15/315; Y. Yang and L. Xing, “ Inverse treatment planning with adaptively evolving voxel‐dependent penalty scheme,” Med. Phys. 31, 2839 – 2839 ( 2004 ). 10.1118/1.1799311; Z. Shou, Y. Yang, C. Cotrutz, D. Levy, and L. Xing, “ Quantitation of the a priori dosimetric capabilities of spatial points in inverse planning and its significant implication in defining IMRT solution space,” Phys. Med. Biol. 50, 1469 – 1482 ( 2005 ). 10.1088/0031‐9155/50/7/010; C. Holdsworth, M. Kim, J. Liao, and M. Phillips, “ The use of a multiobjective evolutionary algorithm to increase flexibility in the search for better IMRT plans,” Med. Phys. 39, 2261 – 2274 ( 2012 ). 10.1118/1.3697535; N. Li, M. Zarepisheh, A. Uribe‐Sanchez, K. Moore, Z. Tian, X. Zhen, Y. J. Graves, Q. Gautier, L. Mell, L. Zhou, X. Jia, and S. Jiang, “ Automatic treatment plan re‐optimization for adaptive radiotherapy guided with the initial plan DVHs,” Phys. Med. Biol. 58, 8725 – 8738 ( 2013 ). 10.1088/0031‐9155/58/24/8725; M. Zarepisheh, A. Uribe‐Sanchez, N. Li, X. Jia, and S. Jiang, “ A multi‐criteria framework with voxel‐dependent parameters for radiotherapy treatment plan optimization,” Med. Phys. 41, 041705 (10pp.) ( 2014 ). 10.1118/1.4866886; H. E. Romeijn, J. F. Dempsey, and J. G. Li, “ A unifying framework for multi‐criteria fluence map optimization models,” Phys. Med. Biol. 49, 1991 – 2013 ( 2004 ). 10.1088/0031‐9155/49/10/011; A. L. Hoffmann, D. den Hertog, A. Y. D. Siem, J. H. A. M. Kaanders, and H. Huizenga, “ Convex reformulation of biologically‐based multi‐criteria intensity‐modulated radiation therapy optimization including fractionation effects,” Phys. Med. Biol. 53, 6345 – 6362 ( 2008 ). 10.1088/0031‐9155/53/22/006; D. Craft, T. Halabi, and T. Bortfeld, “ Exploration of tradeoffs in intensity‐modulated radiotherapy,” Phys. Med. Biol. 50, 5857 – 5857 ( 2005 ). 10.1088/0031‐9155/50/24/007; M. L. Kessler, D. L. McShan, M. A. Epelman, K. A. Vineberg, A. Eisbruch, T. S. Lawrence, and B. A. Fraass, “ Costlets: A generalized approach to cost functions for automated optimization of IMRT treatment plans,” Optim. Eng. 6, 421 – 448 ( 2005 ). 10.1007/s11081‐005‐2066‐2; P. Xia, N. Yu, L. Xing, X. Sun, and L. J. Verhey, “ Investigation of using a power function as a cost function in inverse planning optimization,” Med. Phys. 32, 920 – 920 ( 2005 ). 10.1118/1.1872552; M. Ehrgott, Multicriteria optimization ( Springer Verlag, Berlin, 2005 ).; M. Zarepisheh and E. Khorram, “ On the transformation of lexicographic nonlinear multiobjective programs to single objective programs,” Math. Methods Operations Res. 74, 217 – 231 ( 2011 ). 10.1007/s00186‐011‐0360‐7; M. Karimi, N. Li, M. Zarepisheh, L. Cervino, X. Jia, K. Moore, and S. Jiang, “ Selecting reference patients for automatic treatment planning using multiple geometrical features,” Med. Phys. 40, 379 ( 2013 ) (Abstract). 10.1118/1.4815180

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    المؤلفون: Bordes, Antoine

    المساهمون: Machine Learning and Information Retrieval (MALIRE), Laboratoire d'Informatique de Paris 6 (LIP6), Université Pierre et Marie Curie - Paris 6 (UPMC)-Centre National de la Recherche Scientifique (CNRS)-Université Pierre et Marie Curie - Paris 6 (UPMC)-Centre National de la Recherche Scientifique (CNRS), Université Pierre et Marie Curie - Paris VI, Patrick Gallinari, Bordes, Antoine

    المصدر: Computer Science [cs]. Université Pierre et Marie Curie-Paris VI, 2010. English. ⟨NNT : ⟩
    Computer Science [cs]. Université Pierre et Marie Curie-Paris VI, 2010. English

    وصف الملف: application/pdf

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    Academic Journal