The UF family of reference hybrid phantoms for computational radiation dosimetry
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[1] Perry B. Johnson,et al. Hybrid computational phantoms for medical dose reconstruction , 2010, Radiation and environmental biophysics.
[2] W. Paul Segars,et al. Patient-specific radiation dose and cancer risk estimation in pediatric chest CT: a study in 30 patients , 2010, Medical Imaging.
[3] Wesley E. Bolch,et al. Hybrid Patient-Dependent Phantoms Covering Statistical Distributions of Body Morphometry in the U.S. Adult and Pediatric Population , 2009, Proceedings of the IEEE.
[4] Wesley E. Bolch,et al. An Algorithm for Lymphatic Node Placement in Hybrid Computational Phantoms—Applications to Radionuclide Therapy Dosimetry , 2009, Proceedings of the IEEE.
[5] T. Fell,et al. An image-based skeletal tissue model for the ICRP reference newborn , 2009, Physics in medicine and biology.
[6] W. Paul Segars,et al. Patient-specific dose estimation for pediatric abdomen-pelvis CT , 2009, Medical Imaging.
[7] Ehsan Samei,et al. Patient-specific dose estimation for pediatric chest CT. , 2008, Medical physics.
[8] W P Segars,et al. Realistic CT simulation using the 4D XCAT phantom. , 2008, Medical physics.
[9] Daniel Lodwick,et al. Hybrid computational phantoms of the 15-year male and female adolescent: applications to CT organ dosimetry for patients of variable morphometry. , 2008, Medical physics.
[10] Chengyu Shi,et al. A boundary-representation method for designing whole-body radiation dosimetry models: pregnant females at the ends of three gestational periods—RPI-P3, -P6 and -P9 , 2007, Physics in medicine and biology.
[11] C. Potter. ICRP Publication 100 Human Alimentary Tract Model for Radiological Protection. , 2007 .
[12] Habib Zaidi,et al. Computational anthropomorphic models of the human anatomy: the path to realistic Monte Carlo modeling in radiological sciences. , 2007, Annual review of biomedical engineering.
[13] Deanna Hasenauer,et al. Hybrid computational phantoms of the male and female newborn patient: NURBS-based whole-body models , 2007, Physics in medicine and biology.
[14] Wesley E Bolch,et al. Whole-body voxel phantoms of paediatric patients—UF Series B , 2006, Physics in medicine and biology.
[15] Icrp. Assessing dose of the representative person for the purpose of radiation protection of the public , 2006 .
[16] Wesley E Bolch,et al. REVISIONS TO THE ORNL SERIES OF ADULT AND PEDIATRIC COMPUTATIONAL PHANTOMS FOR USE WITH THE MIRD SCHEMA , 2006, Health physics.
[17] Wesley E Bolch,et al. The UF series of tomographic computational phantoms of pediatric patients. , 2005, Medical physics.
[18] Martin Caon,et al. Voxel-based computational models of real human anatomy: a review , 2004, Radiation and environmental biophysics.
[19] W E Bolch,et al. Creation of two tomographic voxel models of paediatric patients in the first year of life. , 2002, Physics in medicine and biology.
[20] J. Valentin. Basic anatomical and physiological data for use in radiological protection: reference values , 2002, Annals of the ICRP.
[21] Martin Caon,et al. Monte Carlo Calculated Effective Dose to Teenage Girls from Computed Tomography Examinations , 2000 .
[22] M. Zankl,et al. Influence of Patient Size on Organ Doses in Diagnostic Radiology , 1992 .
[23] D. Gentry Steele,et al. The Anatomy and Biology of the Human Skeleton , 1988 .
[24] K. F. Eckerman,et al. Specific absorbed fractions of energy at various ages from internal photon sources: 6, Newborn , 1987 .
[25] P. Payne,et al. Skin thickness measurement by pulsed ultrasound; its reproducibility, validation and variability , 1982, The British journal of dermatology.
[26] Health Risks from Exposure to Low Levels of Ionizing Radiation : BEIR VII Phase 2 4 / 10 / 2011 , 2011 .
[27] W. Paul Segars,et al. Realistic CT simulation using the 4D XCAT phantom. , 2008, Medical physics.
[28] R. W. Leggett,et al. The HATM and HRTM: their future together. , 2006, Annals of the ICRP.