Dosimetric characteristics of electron beams produced by two mobile accelerators, Novac7 and Liac, for intraoperative radiation therapy through Monte Carlo simulation
暂无分享,去创建一个
Evis Karaj | G. Felici | Giuseppe Felici | S. Righi | Sergio Righi | Fabio Di Martino | F. Di martino | E. Karaj | F. di Martino
[1] Iwan Kawrakow,et al. NRC User Codes for EGSnrc , 2010 .
[2] Per Nilsson,et al. Measurements of output factors with different detector types and Monte Carlo calculations of stopping-power ratios for degraded electron beams. , 2004, Physics in medicine and biology.
[3] Absolute dose measurements by means of a small cylindrical ionization chamber for very high dose per pulse high energy electron beams. , 2007, Medical physics.
[4] Martin J. Berger,et al. Tables of energy losses and ranges of electrons and positrons , 1964 .
[5] D. Rogers,et al. AAPM's TG-51 protocol for clinical reference dosimetry of high-energy photon and electron beams. , 1999, Medical physics.
[6] H. Bethe. Zur Theorie des Durchgangs schneller Korpuskularstrahlen durch Materie , 1930 .
[7] F. Bloch,et al. Bremsvermögen von Atomen mit mehreren Elektronen , 1933 .
[8] G. Felici,et al. Radiation protection measurements around a 12 MeV mobile dedicated IORT accelerator. , 2010, Medical physics.
[9] T. Zhu,et al. X-ray source and the output factor. , 1995, Medical physics.
[10] M. Pimpinella,et al. Charge collection efficiency in ionization chambers exposed to electron beams with high dose per pulse , 2006, Physics in medicine and biology.
[11] T. Knöös,et al. Dosimetry characteristics of degraded electron beams investigated by Monte Carlo calculations in a setup for intraoperative radiation therapy. , 2002, Physics in medicine and biology.
[12] Roberto Orecchia,et al. Full-Dose Intraoperative Radiotherapy With Electrons During Breast-Conserving Surgery: Experience With 590 Cases , 2005, Annals of surgery.
[13] Gary A Ezzell,et al. Intraoperative radiation therapy using mobile electron linear accelerators: report of AAPM Radiation Therapy Committee Task Group No. 72. , 2006, Medical physics.
[14] H Svensson,et al. Electron beam characteristics of the 50-MeV racetrack microtron. , 1992, Medical physics.
[15] Michael D. Mills,et al. Shielding assessment of a mobile electron accelerator for intraoperative radiotherapy , 2001, Journal of applied clinical medical physics.
[16] M. Giannelli,et al. Ion recombination correction for very high dose-per-pulse high-energy electron beams. , 2005, Medical physics.
[17] H. Bethe. Bremsformel für Elektronen relativistischer Geschwindigkeit , 1932 .
[18] M Benassi,et al. Monte Carlo simulation of electron beams generated by a 12 MeV dedicated mobile IORT accelerator , 2011, Physics in medicine and biology.
[19] A. Luini,et al. Electron intraoperative treatment in patients with early-stage breast cancer: data update , 2006, Expert review of anticancer therapy.
[20] M. Salvatore,et al. The Italian affair: the employment of parallel-plate ionization chambers for dose measurements in high dose-per-pulse IORT electron beams. , 2010, Medical Physics (Lancaster).
[21] C. Bostock,et al. Annotation of Hans Bethe’s paper, Zeitschrift für Physik 76, 293 (1932), “Braking Formula for Electrons of Relativistic Speed” , 2014 .
[22] A. Luini,et al. Full-dose intra-operative radiotherapy with electrons (ELIOT) during breast-conserving surgery: experience with 1246 cases , 2008, Ecancermedicalscience.
[23] U. Veronesi,et al. Is Electron Beam Intraoperative Radiotherapy (ELIOT) Safe in Pregnant Women with Early Breast Cancer? In Vivo Dosimetry to Assess Fetal Dose , 2008, Annals of Surgical Oncology.
[24] M. Pimpinella,et al. Dosimetric characteristics of electron beams produced by a mobile accelerator for IORT , 2007, Physics in Medicine and Biology.
[25] G X Ding,et al. Calculation of stopping-power ratios using realistic clinical electron beams. , 1995, Medical physics.
[26] J. Rosenzweig. Fundamentals of Beam Physics , 2003 .
[27] D. Sheikh-Bagheri,et al. Sensitivity of megavoltage photon beam Monte Carlo simulations to electron beam and other parameters. , 2002, Medical physics.
[28] G. Pitchford. Radiation Dosimetry: Electron Beams with Energies Between 1 and 50 MeV, in: ICRU Report 35. International Commission on Radiation Units and Measurements, Bethesda, Md. (1984) , 1986 .
[29] Martin J Butson,et al. Weak energy dependence of EBT gafchromic film dose response in the 50 kVp-10 MVp X-ray range. , 2006, Applied radiation and isotopes : including data, instrumentation and methods for use in agriculture, industry and medicine.
[30] P. Andreo,et al. Absorbed Dose Determination in External Beam Radiotherapy: An International Code of Practice for Dosimetry based on Standards of Absorbed Dose to Water , 2001 .
[31] R. Orecchia,et al. Application of failure mode and effects analysis to intraoperative radiation therapy using mobile electron linear accelerators. , 2012, International journal of radiation oncology, biology, physics.
[32] Aapm. A protocol for the determination of absorbed dose from high-energy photon and electron beams. , 1983, Medical physics.
[33] L. Menegotti,et al. Monte Carlo investigation of breast intraoperative radiation therapy with metal attenuator plates. , 2007, Medical physics.