Development of the two Korean adult tomographic computational phantoms for organ dosimetry
- 24 January 2006
- journal article
- Published by Wiley in Medical Physics
- Vol. 33 (2), 380-390
- https://doi.org/10.1118/1.2161405
Abstract
Following the previously developed Korean tomographic phantom, KORMAN, two additional whole-body tomographic phantoms of Korean adult males were developed from magnetic resonance (MR) and computed tomography (CT) images, respectively. Two healthy male volunteers, whose body dimensions were fairly representative of the average Korean adult male, were recruited and scanned for phantom development. Contiguous whole body MR images were obtained from one subject exclusive of the arms, while whole-body CT images were acquired from the second individual. A total of 29 organs and tissues and 19 skeletal sites were segmented via image manipulation techniques such as gray-level thresholding, region growing, and manual drawing, in which each of segmented image slice was subsequently reviewed by an experienced radiologist for anatomical accuracy. The resulting phantoms, the MR-based KTMAN-1 (Korean Typical MAN-1) and the CT-based KTMAN-2 (Korean Typical MAN-2), consist of 300 X 150 X 344 voxels with a voxel resolution of 2 X 2 X 5 mm3 for both phantoms. Masses of segmented organs and tissues were calculated as the product of a nominal reference density, the prevoxel volume, and the cumulative number of voxels defining each organs or tissue. These organs masses were then compared with those of both the Asian and the ICRP reference adult male. Organ masses within both KTMAN-1 and KTMAN-2 showed differences within 40% of Asian and ICRP reference values, with the exception of the skin, gall bladder, and pancreas which displayed larger differences. The resulting three-dimensional binary file was ported to the Monte Carlo code MCNPX2.4 to calculate organ doses following external irradiation for illustrative purposes. Colon, lung, liver, and stomach absorbed doses, as well as the effective dose, for idealized photon irradiation geometries (anterior-posterior and right lateral) were determined, and then compared with data from two other tomographic phantoms (Asian and Caucasian), and stylized ORNL phantom. The armless KTMAN-1 can be applied to dosimetry for computed tomography or lateral x-ray examination, while the whole body KTMAN-2 can be used for radiation protection dosimetry.Keywords
This publication has 30 references indexed in Scilit:
- Fluence-to-dose conversion coefficients for monoenergetic proton beams based on the VIP-Man anatomical modelRadiation Protection Dosimetry, 2004
- Pocket Atlas of Body CT Anatomy, 2nd Ed., Edited by Webb W. Richard, Michael B. Gotway, Lippincott Williams & Wilkins, 2002, 144pp., ISBN 0-7817-3663-3; €29.55European Journal of Radiology, 2003
- Organ dose conversion coefficients for external photon irradiation of male and female voxel modelsPhysics in Medicine & Biology, 2002
- CONVERSION COEFFICIENTS BASED ON THE VIP-MAN ANATOMICAL MODEL AND EGS4-VLSI CODE FOR EXTERNAL MONOENERGETIC PHOTONS FROM 10 keV TO 10 MeVHealth Physics, 2001
- A Realistic Anthrompomorphic Phantom for Calculating Specific Absorbed Fractions of Energy Deposited from Internal Gamma EmittersRadiation Protection Dosimetry, 1998
- Reference Man Models for Males and Females of Six Age Groups of Asian PopulationsRadiation Protection Dosimetry, 1998
- A Realistic Anthropomorphic Phantom for Calculating Organ Doses Arising from External Photon IrradiationRadiation Protection Dosimetry, 1997
- The construction of computer tomographic phantoms and their application in radiology and radiation protectionRadiation and Environmental Biophysics, 1988
- Patient risk from interproximal radiographyOral Surgery, Oral Medicine, Oral Pathology, 1984