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- W2033995737 abstract "RadiographerVolume 59, Issue 1 p. 1-4 Guest EditorialOpen Access Computerised treatment planning systems: where did it all begin? Marianne Rinks PhD, BEd(AdultEd), Cert(RadTher), MIR, Corresponding Author Marianne Rinks PhD, BEd(AdultEd), Cert(RadTher), MIR Northern Sydney Cancer Centre, Royal North Shore Hospital, St Leonards, New South Wales, 2065 Australia mrinks@nsccahs.health.nsw.gov.auSearch for more papers by this author Marianne Rinks PhD, BEd(AdultEd), Cert(RadTher), MIR, Corresponding Author Marianne Rinks PhD, BEd(AdultEd), Cert(RadTher), MIR Northern Sydney Cancer Centre, Royal North Shore Hospital, St Leonards, New South Wales, 2065 Australia mrinks@nsccahs.health.nsw.gov.auSearch for more papers by this author First published: 02 October 2013 https://doi.org/10.1002/j.2051-3909.2012.tb00165.xAboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onFacebookTwitterLinkedInRedditWechat References 1Knight K, Toouma N, Zhu L, Duchesne GM, Cox J. Implementation of daily image-guided radiation therapy using an in-room CT scanner for prostate cancer isocentre localization. J Med Imaging Radiat Oncol 2009; 53: 132– 38. 2Bell LJ, Oliver L, Vial P, Eade TN, Rinks M, Hammond E. et al. Implementation of an image-guided radiation therapy program: Lessons learnt and future challenges. J Med Imag Radiat Oncol 2010: 82– 9. 3Hilder B. Comparison of fiducial and bony anatomy match with the introduction of implanted gold seed markers in the prostate gland. The Radiographer 2010; 57 (2): 21– 5. 4Devereux B, Sisson T, Fenton P, Bradford C, Ambler A, Plank A, et al. Uniformity in the analysis of head and neck image guided radiotherapy across multiple departments. The Radiographer 2011; 58 (2): 5– 9. 5Brown A, Gebski V, Beldham-Collins R, Hardcastle-Fowler T, Do V, Turner S. Gold seed fiducial markers for prostate radiation therapy: Describing prostate motion. The Radiographer 2011; 58 (3): 28– 31. 6Cox J, Halkett G, Anderson C, Heard R. Australian radiation therapists rank technology-related research as most important to radiation therapy. J Radiother Pract 2011; 10: 228– 38. 7Fernandez EM, Shentall GS, Mayles WP. Dearnaley, DP. The acceptability of a multileaf collimator as a replacement for conventional blocks. Radiother Oncol 1995; 36 (1): 65– 74. 8Woods RG. Computers in radiotherapy and their effect on staff training. Biomed Eng 1971; 6 (9): 409– 12. 9Oliver L. The place of a small dedicated computer in the hospital. Australas Bulletin Med Phy & Biophys 1973; 60: 19– 26. 10Oliver LD. Thirty year celebration of journal publications on radiation oncology medical physics. Austratas Phys Eng Sci Med 2007; 30 (1): 1– 12. 11Hounsfield GN. Computer medical imaging. Med Phys 1980; 7 (4): 283– 90. 12McCullough EC, Payne JT. X-ray-transmission computed tomography. Med Phys 1977; 4 (2): 85– 98. 13Goitein M, Abrams M, Rowell D, Pollari H, Wiles J. Multi-dimensional treatment planning II: Beam's eye-view, back projection, and projection through CT sections. Int J Radiat Oncol Biol Phys 1983; 9 (6): 789– 97. 14Ibbott GS. Radiation therapy treatment planning and the distortion of CT images. Med Phys 1980; 7 (3): 261. 15Khan FM. Treatment planning II: Patient data, corrections, and set up. In: The physics of radiation therapy. Baltimore: Williams & Wilkins; 1984. Pp 244. 16Van Dyk J, Battista JJ, Cunningham JR, Rider WD, Sontag MR. On the impact of CT scanning on radiotherapy planning. Comput Tomogr 1980; 4 (1): 55– 65. 17Wizenberg MJ. Prospects for computed tomography in radiation therapy. J Comput Tomogr 1981; 5 (3): 283– 87. 18Goitein M. Limitations of two-dimensional treatment planning programs. Med Phys 1982; 9 (4): 580– 86. 19 AR Smith, JA Purdy, eds. Three-dimensional treatment planning systems. New York: Pergamon Press, Inc; 1991. 20Laughlin JS, Goitein M, Purdy JA, Sontag M. Evaluation of high energy photon external beam treatment planning: Project summary. In: AR Smith, JA Purdy, editors. Three-dimensional treatment planning systems. New York: Pergamon Press Inc; 1991. 7– 8. 21Goitein M. The comparison of treatment plans. Semin Radiat Oncol 1992; 2 (4): 246– 56. 22Lichter AS, Sandler HM, Robertson JM, Lawrence TS, Ten Haken RK, McShan DL, et al. Clinical experience with three-dimensional treatment planning. Semin Radiat Oncol 1992; 2 (4): 257– 66. 23Leibel SA, Kutcher GJ, Mohan R, Harrison LB, Armstrong JG, Zelefsky MJ, et al. Three-dimensional conformal radiation therapy at the Memorial Sloan-Kettering Cancer Center. Semin Radiat Oncol 1992; 2 (4): 274– 89. 24Mohan R, Barest G, Brewster LJ, Chui C-S, Kutcher G, Laughlin JS, et al. A comprehensive three-dimensional radiation treatment planning system. Int J Radiat Oncot Biot Phys 1988; 15 (2): 481– 95. 25Sailer SL, Chaney EL, Rosenman JG, Sherouse GW, Tepper JE. Treatment planning at the University of North Carolina at Chapel Hill. Semin Radiat Oncol 1992; 2 (4): 267– 73. 26Mohan R. Three-dimensional radiation treatment planning. Austratas Phys Eng Sci Med 1989; 12 (2): 73– 91. 27Webb S. Three-dimensional radiation-therapy treatment planning. In: The physics of three-dimensional radiation therapy: Conformal radiotherapy, radiosurgery and treatment planning. Bristol: IOP Publishing; 1993. Pp 9. 28Smith AR, Gerber RL, Hughes DB, Kline RW, Kutcher G, Ling C, et al. Treatment planning structure and process in the United States: A “Patterns of care” study. Int J Radiat Oncot Biot Phys 1995; 32 (1): 255– 62. 29Fraass BA. The development of conformal radiation therapy. Med Phys 1995; 22 (11 Pt 2): 1911– 21. 30Metcalfe P, Kron T, Hoban P. Radiotherapy treatment planning. In: The physics of radiotherapy x-rays: From linear accelerators. Madison WI: Medical Physics Publishing; 1997. Pp 324. 31Van Dyk J, Barnett RB, Battista JJ. Computerized radiation treatment planning systems. In: J Van Dyk, editor. Modern technology of radiation oncology. Madison: Medical Physics Publishing; 1999. 235. 32Bedford JL. Speed versus accuracy in a fast convolution photon dose calculation for conformal radiotherapy. Phys Med Biol 2002; 47 (19): 3475– 84. 33Rosemark PJ, Leu MY, Cook RJ, Clanton DE. Criteria for the evaluation of treatment planning systems. Med Dosim 1996; 21 (1): 15– 18 34Cheng C-W, Das IJ, Tang W, Chang S, Tsai J-S, Ceberg C, et al. Dosimetric comparison of treatment planning systems in irradiation of breast with tangential fields. Int J Radiat Oncol Biol Phys 1997; 38 (4): 835– 42 35Purdy JA. Future directions in 3-D treatment planning and delivery: A physicist's perspective. Int J Radiat Oncol Biol Phys 2000; 46 (1): 3– 6. 36Reynaert N, van der Marck SC, Schaart DR, Van der Zee W, Van Vliet-Vroegindeweij C, et al. Monte Carlo treatment planning for photon and electron beams. Radiat Phys Chem 2007; 76 (4): 643– 86 37Rinks M. The adoption of 3D radiation therapy treatment planning systems in Australia. Sydney: University of Sydney; 2009. Pp 310. 38Kessler ML, McShan DL, Fraass BA. A computer-controlled conformal radiotherapy system. III: Graphical simulation and monitoring of treatment delivery. Int J Radiat Oncol Biol Phys 1995; 33 (5): 1173– 80. 39Klein EE, Drzymala RE, Williams R, Westfall LA, Purdy JA. A change in treatment process with a modern record and verify system. Int J Radiat Oncol Biol Phys 1998; 42 (5): 1163– 68. 40Young M. Image fusion: MRi based planning in Hobart. The Radiographer 2000; 47 (2): 75– 80. 41Macmanus M, D'Costa I, Everitt S, Andrews J, Ackerly T, Binns D, et al. Comparison of CT and positron emission tomography/CT coregistered images in planning radical radiotherapy in patients with non-small-cell lung cancer. Austratas Radiol 2007; 51 (4): 386– 93. 42Boyer AL, Ochran TG, Nyerick CE, Waldron TJ, Huntzinger CJ. Clinical dosimetry for implementation of a multileaf collimator. Med Phys 1992; 19 (5): 1255– 61. 43Brewster L, Mohan R, Mageras G, Burman C, Leibel S, Fuks Z. Three dimensional conformal treatment planning with multileaf collimators. Int J Radiat Oncol Biol Phys 1995; 33 (5): 1081– 89. 44Ling CC, Fuks Z. Conformal radiation treatment: A critical appraisal. Eur J Cancer 1995; 31a (5): 799– 803. 45Manderson C, Berry M, Gebski V. An Australian survey of current practice regarding radiation treatment records. The Radiographer 1996; 43 (3): 97– 103. 46Webb S. Intensity-modulated radiation therapy (IMRT) general statements and points of debate. In: Contemporary IMRT: Developing physics and clinical implementation. London: IOP Publishing; 2005. Pp 5– 6. 47Corry J, Hope G, Cramb J, Smylie J, Joon DL, Towns S, et al. Intensity-modulated radiation therapy: First reported treatment in Australasia. Australas Radiol 2002; 46 (3): 285– 89. 48 NSW Ministry of Health, Statewide and Rural Health Services and Capital Planning. Radiotherapy Management Information System Report. NSW Ministry of Health 2010; 2011: 6. 49Lagerwaard FJ, Senan S. Lung cancer: Intensity-modulated radiation therapy, four-dimnesional imaging and mobility management. In: JL Meyer, editor. IMRT, IGRT, SBRT – advances in the treatment planning and delivery of radiotherapy. Basel: Karger; 2007. 240– 43. 50Foroudi F, Wong J, Kron T, Roxby P, Haworth A, Bailey A, et al. Development and evaluation of a training program for therapeutic radiographers as a basis for online adaptive radiation therapy for bladder carcinoma. Radiography 2010; 16: 14– 20. 51Foroudi F, Wong J, Kron T, Rolfo A, Haworth A, Roxby P, et al. Online adaptive radiotherapy for muscle-invasive bladder cancer: Results of a pilot study. Int J Radiat Oncol Biol Phys 2011; 81 (3): 765– 71. Volume59, Issue1March 2012Pages 1-4 ReferencesRelatedInformation" @default.
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- W2033995737 cites W1986185952 @default.
- W2033995737 cites W1986824615 @default.
- W2033995737 cites W1990463703 @default.
- W2033995737 cites W1993222260 @default.
- W2033995737 cites W1997891658 @default.
- W2033995737 cites W2012978021 @default.
- W2033995737 cites W2013058506 @default.
- W2033995737 cites W2016036990 @default.
- W2033995737 cites W2024764756 @default.
- W2033995737 cites W2028620967 @default.
- W2033995737 cites W2030566783 @default.
- W2033995737 cites W2032451938 @default.
- W2033995737 cites W2045332911 @default.
- W2033995737 cites W2045518974 @default.
- W2033995737 cites W2046398375 @default.
- W2033995737 cites W2054317799 @default.
- W2033995737 cites W2055917547 @default.
- W2033995737 cites W2059754501 @default.
- W2033995737 cites W2064133873 @default.
- W2033995737 cites W2075362028 @default.
- W2033995737 cites W2081311980 @default.
- W2033995737 cites W2085024347 @default.
- W2033995737 cites W2094388308 @default.
- W2033995737 cites W2116871808 @default.
- W2033995737 cites W2122633800 @default.
- W2033995737 cites W2124924374 @default.
- W2033995737 cites W2133022758 @default.
- W2033995737 cites W2137046685 @default.
- W2033995737 cites W2158960735 @default.
- W2033995737 cites W2164281035 @default.
- W2033995737 cites W4252902269 @default.
- W2033995737 cites W4321059652 @default.
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