Clinical electron-beam dosimetry: report of AAPM Radiation Therapy Committee Task Group No. 25.
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S. C. Prasad | J. Purdy | G. Kutcher | R. Nath | K. Doppke | F. Khan | K. Hogstrom | M. Rozenfeld | B. Werner
[1] Enrico Fermi,et al. The Ionization Loss of Energy in Gases and in Condensed Materials , 1940 .
[2] J. S. Laughlin,et al. Ranges of High Energy Electrons in Water , 1951 .
[3] R. Sternheimer,et al. Density Effect for the Ionization Loss in Various Materials , 1952 .
[4] J. S. Laughlin,et al. Oxidation of ferrous sulfate by high-energy electrons and the influence of the polarization effect. , 1957, Radiation research.
[5] C. J. Karzmark,et al. Radiation therapy with high-energy electrons. I. Physical considerations, 10 to 60 Mev. , 1961, Radiology.
[6] E. W. Shrigley. Medical Physics , 1944, British medical journal.
[7] W. Pohlit. Dosimetrie zur Betatrontherapie , 1965 .
[8] J. S. Laughlin,et al. Electron-beam treatment planning in inhomogeneous tissue. , 1965, Radiology.
[9] J. Wiart,et al. Dosimetry , 2010, Indian Journal of Nuclear Medicine : IJNM : The Official Journal of the Society of Nuclear Medicine, India.
[10] J. S. Laughlin. HIGH ENERGY ELECTRON TREATMENT PLANNING FOR INHOMOGENEITIES. , 1965, The British journal of radiology.
[11] H. Svensson,et al. Photographic film for determination of isodose curves from betatron electron radiation. , 1967, Acta radiologica: therapy, physics, biology.
[12] P. Almond,et al. High-energy electron dose perturbations in regions of tissue heterogeneity. II. Physical models of tissue heterogeneities. , 1967, Radiology.
[13] J. Cameron,et al. THERMOLUMINESCENT RESPONSE OF LITHIUM FLUORIDE TO HIGH‐ENERGY ELECTRONS * , 1969, Annals of the New York Academy of Sciences.
[14] S M Seltzer,et al. CALCULATION OF ENERGY AND CHARGE DEPOSITION AND OF THE ELECTRON FLUX IN A WATER MEDIUM BOMBARDED WITH 20‐MEV ELECTRONS * , 1969, Annals of the New York Academy of Sciences.
[15] A. Dutreix,et al. FILM DOSIMETRY OF HIGH‐ENERGY ELECTRONS , 1969, Annals of the New York Academy of Sciences.
[16] N. S. Barnett,et al. Private communication , 1969 .
[17] J. Cameron,et al. Thermoluminescent response of lithium fluoride to radiations with different LET. , 1969, Physics in medicine and biology.
[18] J. S. Laughlin,et al. COMPREHENSIVE ELECTRON‐BEAM TREATMENT PLANNING , 1969, Annals of the New York Academy of Sciences.
[19] W. Pohlit. CALCULATED AND MEASURED DOSE DISTRIBUTIONS IN INHOMOGENEOUS MATERIALS AND IN PATIENTS , 1969, Annals of the New York Academy of Sciences.
[20] Y. Okumura,et al. Modification of dose distribution in high-energy electron beam treatment. , 1971, Radiology.
[21] H. Svensson,et al. Dosimetric measurements at the nordic medical accelerators. I. Characteristics of the radiation beam. , 1971, Acta radiologica: therapy, physics, biology.
[22] Correction of dose distribution for air space in high energy electron beam therapy , 1972 .
[23] Letter: Electron back-scattering from lead in a perspex phantom. , 1975, The British journal of radiology.
[24] J. Giarratano,et al. Lead shielding thickness for dose reduction of 7- to 28MeV electrons. , 1975, Medical physics.
[25] F. Khan,et al. Field shaping in electron beam therapy. , 1976, The British journal of radiology.
[26] H. Svensson,et al. Specification of electron beam quality from the central-axis depth absorbed-dose distribution. , 1976, Medical physics.
[27] A. O. Fregene. The influence of the composition of LiF TLD materials on their sensitivity to high energy electrons. , 1977, Physics in medicine and biology.
[28] A. Shiragai. An approach to an analysis of the energy response of LiF-TLD to high energy electrons. , 1977, Physics in medicine and biology.
[29] R. Ellis,et al. A versatile electron collimation system to be used with electron cones supplied with Varian's Clinac 18. , 1977, International journal of radiation oncology, biology, physics.
[30] F. Khan,et al. Effect of air space on depth dose in electron beam therapy , 1978 .
[31] Alan Mckenzie. Air-gap correction in electron treatment planning. , 1979, Physics in medicine and biology.
[32] Victor J. Sank,et al. THE DIRECT USE OF CT NUMBERS IN RADIOTHERAPY DOSAGE CALCULATIONS FOR INHOMOGENEOUS MEDIA , 1978, Physics in medicine and biology.
[33] On the constancy in composition of polystyrene and polymethylmethacrylate plastics. , 1979, Medical physics.
[34] P. Wootton,et al. Dose Specification for Reporting External Beam Therapy with Photons and Electrons , 1979 .
[35] A. Boyer,et al. Electron dosimetry of irregular fields on the Clinac 18. , 1978, International journal of radiation oncology, biology, physics.
[36] F M Khan,et al. Computer algorithm for electron beam treatment planning. , 1979, Medical physics.
[37] H. Grubin. The physics of semiconductor devices , 1979, IEEE Journal of Quantum Electronics.
[38] J. Purdy,et al. Lipowitz metal shielding thickness for dose reduction of 6-20 MeV electrons. , 1980, Medical physics.
[39] Individualized eye shields for use in electron beam therapy as well as low-energy photon irradiation. , 1980, International journal of radiation oncology, biology, physics.
[40] I. Lax,et al. Collimation of high energy electron beams. , 1980, Acta radiologica. Oncology.
[41] J. Battista,et al. Half body radiotherapy: the use of computed tomography to determine the dose to lung. , 1980, International journal of radiation oncology, biology, physics.
[42] F D Thomas,et al. Density patterns in the normal lung as determined by computed tomography. , 1980, Radiology.
[43] J. Cundiff,et al. Dose enhancement from backscattered radiation at tissue-metal interfaces irradiated with high energy electrons. , 1980, The British journal of radiology.
[44] H Svensson,et al. Calibration and use of plane-parallel ionization chambers for the determination of absorbed dose in electron beams. , 1981, Acta radiologica. Oncology.
[45] Perturbation of electron beam doses as a function of SSD due to the use of shielding blocks on the Clinac-18a. , 1981, Medical physics.
[46] F. Khan,et al. Lead shielding for electrons. , 1981, Medical physics.
[47] H. Eisenlohr. Applied thermoluminescence dosimetry , 1982 .
[48] G. Lambert,et al. Backscattering in electron beam therapy for energies between 3 and 35 MeV. , 1982, Physics in medicine and biology.
[49] F. Khan,et al. A model for calculating electron beam scattering in treatment planning. , 1982, Medical physics.
[50] R. Dixon,et al. The problem of obliquely incident beams in electron-beam treatment planning. , 1982, Medical physics.
[51] P. Almond,et al. Prediction of electron beam output factors. , 1982, Medical physics.
[52] G. Lambert,et al. Penetration of backscattered electrons in polystyrene for energies between 1 and 25 MeV , 1982 .
[53] S. C. Prasad,et al. Lung dose in electron beam therapy of chest wall. , 1983, Acta radiologica. Oncology.
[54] Tissue equivalence of bolus materials for electron beams. , 1983, Radiology.
[55] I. Lax,et al. Absorbed dose distribution of electron beams in uniform and inhomogeneous media. , 1983, Acta radiologica. Supplementum.
[56] P. Schröder-Babo. Determination of the virtual electron source of a betatron. , 1983, Acta radiologica. Supplementum.
[57] G. Rikner,et al. Silicon diodes as detectors in relative dosimetry of photon, electron and proton radiation fields , 1983 .
[58] G. Rikner,et al. Effects of radiation damage on p-type silicon detectors , 1983 .
[59] Reply to comments of Wu et al. , 1984 .
[60] Dose enhancement in bone in electron beam therapy. , 1984, Radiology.
[61] P. Andreo,et al. Comments on the transfer of absorbed dose from plastic to water in electron beams. , 1984, Medical physics.
[62] E. Sternick,et al. Comments on the method of energy determination for electron beams in the TG-21 protocol. , 1984, Medical physics.
[63] S. C. Sharma,et al. Dosimetry of small fields for Therac 20 electron beams. , 1984, Medical physics.
[64] P. Munro,et al. Dose errors due to charge storage in electron irradiated plastic phantoms. , 1984, Medical physics.
[65] M. Weinhous,et al. Determining Pion, the correction factor for recombination losses in an ionization chamber. , 1984, Medical physics.
[66] E. Ertan,et al. A new approach to overcome the inconveniences in electron dosimetry associated with the beam scanning technique in linacs. , 1984, Physics in medicine and biology.
[67] J. Palta,et al. Demonstration of relatively new electron dosimetry measurement techniques on the Mevatron 80. , 1984, Medical physics.
[68] A Brahme,et al. Current algorithms for computed electron beam dose planning. , 1985, Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology.
[69] K. Hogstrom,et al. Determination of electron beam output factors for a 20-MeV linear accelerator. , 1985, Medical physics.
[70] J. Hazle,et al. Electron beam central axis depth dose measurements. , 1985, Medical physics.
[71] Electron beam dose planning using Gaussian beams. Energy and spatial scaling with inhomogeneities. , 1985, Acta radiologica. Oncology.
[72] G. Rikner. Characteristics of a selectively shielded p-Si detector in 60Co and 8 and 16 MV roentgen radiation. , 1985, Acta radiologica. Oncology.
[73] B. Mijnheer,et al. Comparison of ionisation measurements in water and polystyrene for electron beam dosimetry. , 1985, Physics in medicine and biology.
[74] D. Thwaites. Measurements of ionisation in water, polystyrene and a 'solid water' phantom material for electron beams. , 1985, Physics in medicine and biology.
[75] F. Khan,et al. Obliquity correction for electron beams. , 1985, Medical physics.
[76] R. L. Dixon,et al. Gold and Platinum Doped Radiation Resistant Silicon Diode Detectors , 1986 .
[77] F. T. Kuchnir,et al. Determination of the source position for the electron beams from a high-energy linear accelerator. , 1986, Medical physics.
[78] K R Shortt,et al. Electron beam dose distributions near standard inhomogeneities , 1986 .
[79] C. J. Karzmark. Total skin electron therapy: Technique and dosimetry , 1986 .
[80] A F Bielajew,et al. Differences in electron depth-dose curves calculated with EGS and ETRAN and improved energy-range relationships. , 1986, Medical physics.
[81] B J Gerbi,et al. The polarity effect for commercially available plane-parallel ionization chambers. , 1987, Medical physics.
[82] R. T. Ten Haken,et al. Relative electron beam measurements: scaling depths in clear polystyrene to equivalent depths in water. , 1987, Medical physics.
[83] J. van de Geijn,et al. A new model for computerized clinical electron beam dosimetry. , 1987, Medical physics.
[84] J. S. Pruitt,et al. Calibration of beta-particle-emitting ophthalmic applicators , 1987 .
[85] R K Ten Haken,et al. Practical methods of electron depth-dose measurement compared to use of the NACP design chamber in water. , 1987, Medical physics.
[86] F J Bova,et al. A film phantom for routine film dosimetry in the clinical environment. , 1990, Medical dosimetry : official journal of the American Association of Medical Dosimetrists.