Comparison between effective doses for voxel-based and stylized exposure models from photon and electron irradiation
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J. W. Vieira | J W Vieira | R Kramer | H J Khoury | R. Kramer | H. Khoury | H J Khoury
[1] Ws Snyder,et al. MIRD Pamphlet #11: S, Absorbed Dose per Unit Cumulated Activity for Selected Radionuclides and Organs , 1975 .
[2] P B Hoffer,et al. Computerized three-dimensional segmented human anatomy. , 1994, Medical physics.
[3] M. Zankl,et al. Impact on internal doses of photon SAFs derived with the GSF adult male voxel phantom. , 2001, Health physics.
[4] J. W. Vieira,et al. All about FAX: a Female Adult voXel phantom for Monte Carlo calculation in radiation protection dosimetry , 2004, Physics in medicine and biology.
[5] C. R. Richmond. ICRP Publication 23 , 1985 .
[6] R. Cloutier. Tissue Substitutes in Radiation Dosimetry and Measurement. , 1989 .
[7] W. S. Snyder,et al. DISTRIBUTION OF DOSE IN THE BODY FROM A SOURCE OF GAMMA RAYS DISTRIBUTED UNIFORMLY IN AN ORGAN. , 1968 .
[8] N Petoussi-Henss,et al. Organ dose conversion coefficients for external photon irradiation of male and female voxel models , 2002, Physics in medicine and biology.
[9] X. Xu,et al. Organ dose conversion coefficients for 0.1-10 MeV electrons calculated for the VIP-Man tomographic model. , 2001, Health physics.
[10] X. Xu,et al. Conversion coefficients based on the VIP-Man anatomical model and EGS4. , 2001, Health physics.
[11] J. W. Vieira,et al. EFFECTIVE DOSE RATIOS FOR TOMOGRAPHIC AND STYLIZED MODELS FROM EXTERNAL EXPOSURE TO ELECTRONS , 2005 .
[12] Kimiaki Saito,et al. Evaluation of S Values for Beta-ray Emitters within the Urinary Bladder , 2004 .
[13] M. Zankl,et al. The adult male voxel model ”Golem” segmented from whole-body CT patient data , 2001, Radiation and environmental biophysics.
[14] W. S. Snyder,et al. Estimates of absorbed fractions for monoenergetic photon sources uniformly distributed in various organs of a heterogeneous phantom. , 1974, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.
[15] D. G. Jones. A Realistic Anthrompomorphic Phantom for Calculating Specific Absorbed Fractions of Energy Deposited from Internal Gamma Emitters , 1998 .
[16] J. F. Briesmeister. MCNP-A General Monte Carlo N-Particle Transport Code , 1993 .
[17] R. Kramer,et al. On the Calculation of the Effective Dose Equivalent , 1982 .
[18] Icrp. Age-dependent doses to members of the public from intake of radionuclides: Part 4 Inhalation dose coefficients , 1995, Annals of the ICRP.
[19] Keith F. Eckerman,et al. Mathematical models and specific absorbed fractions of photon energy in the nonpregnant adult female and at the end of each trimester of pregnancy , 1995 .
[20] J. W. Vieira,et al. All about FAX: a Female Adult voXel phantom for Monte Carlo calculation in radiation protection dosimetry. , 2003, Physics in medicine and biology.
[21] J. W. Vieira,et al. Application of the MAX/EGS4 exposure model to the dosimetry of the Yanango radiation accident , 2005, Physics in medicine and biology.
[22] Terry Smith,et al. Comparison of internal radiation doses estimated by MIRD and voxel techniques for a "family" of phantoms , 2000, European Journal of Nuclear Medicine.
[23] H. Kawamura,et al. Introduction to the ICRP Publication 70, “Basic Anatomical and Physiological Data for Use in Radiological Protection: The Skeleton” , 1996 .
[24] M G Stabin,et al. Absorbed fractions in a voxel-based phantom calculated with the MCNP-4B code. , 2000, Medical physics.
[25] X. Xu,et al. Specific absorbed fractions from the image-based VIP-Man body model and EGS4-VLSI Monte Carlo code: internal electron emitters. , 2001, Physics in medicine and biology.
[26] N Petoussi-Henss,et al. The application of voxel phantoms to the internal dosimetry of radionuclides. , 2003, Radiation protection dosimetry.
[27] W. S. Snyder,et al. Report of the task group on reference man , 1979, Annals of the ICRP.
[28] J. W. Vieira,et al. MAX meets ADAM: a dosimetric comparison between a voxel-based and a mathematical model for external exposure to photons. , 2004, Physics in medicine and biology.
[29] M. Zankl,et al. Voxel Anthropomorphic Models as a Tool for Internal Dosimetry , 1998 .
[30] D. G. Jones. A Realistic Anthropomorphic Phantom for Calculating Organ Doses Arising from External Photon Irradiation , 1997 .
[31] M G Stabin,et al. PHOTON SPECIFIC ABSORBED FRACTIONS CALCULATED IN THE TRUNK OF AN ADULT MALE VOXEL-BASED PHANTOM , 2002, Health physics.
[32] A. Bozkurt,et al. VIP-MAN: AN IMAGE-BASED WHOLE-BODY ADULT MALE MODEL CONSTRUCTED FROM COLOR PHOTOGRAPHS OF THE VISIBLE HUMAN PROJECT FOR MULTI-PARTICLE MONTE CARLO CALCULATIONS , 2000, Health physics.
[33] K. F. Eckerman,et al. Specific absorbed fractions of energy at various ages from internal photon sources: 6, Newborn , 1987 .