A REVISED STYLIZED MODEL OF THE ADULT EXTRATHORACIC AND THORACIC AIRWAYS FOR USE WITH THE ICRP-66 HUMAN RESPIRATORY TRACT MODEL
- 1 April 2004
- journal article
- research article
- Published by Wolters Kluwer Health in Health Physics
- Vol. 86 (4), 337-352
- https://doi.org/10.1097/00004032-200404000-00002
Abstract
The extrathoracic airways and lymph nodes have not yet been represented explicitly in mathematical or stylized models of the human body utilized in the transport of photons internally between source and target organs. Currently, the ICRP assumes that the extrathoracic airways are reasonably approximated by using the thyroid or brain as the surrogate source and target region within the ICRP 66 respiratory tract model. In the present study, a new mathematical model was created to explicitly consider the extrathoracic airways, as well as other respiratory structures in the thorax of the adult. The model incorporates the MIRD model of the adult head and neck, and the ORNL model of the adult torso/legs. Additional defining equations are established for the external nose, nasal cavity, nasal sinuses (frontal, ethmoid, sphenoid, and maxillary sinuses), oral cavity, larynx, pharynx, trachea, and main bronchi. Use of the thyroid as a surrogate source for photon emissions in the ET1 and ET2 tissues is shown to provide either close or conservative values of specific absorbed fraction to target organs such as the lungs or breasts at energies exceeding 50–100 keV. At lower energies, surrogate-region values of SAF underestimate dose to target organs in ways highly dependent upon the source/target configuration. The use of the brain as a surrogate source for ET1 and ET2 tissues irradiating the thyroid is shown to result in SAF values that are lower than values of SAF(thyroid←jET1) by factors of ∼2–3, and lower than values of SAF(thyroid←jET2) by factors of ∼30 at photon energies >50 keV. At energies 2Keywords
This publication has 6 references indexed in Scilit:
- INFLUENCES OF PARAMETER UNCERTAINTIES WITHIN THE ICRP-66 RESPIRATORY TRACT MODEL: PARTICLE CLEARANCEHealth Physics, 2003
- INFLUENCES OF PARAMETER UNCERTAINTIES WITHIN THE ICRP-66 RESPIRATORY TRACT MODEL: REGIONAL TISSUE DOSES FOR 239PuO2 AND 238UO2/238U3O8Health Physics, 2003
- ABSORBED FRACTION SENSITIVITY TO CHANGES IN SIZE OF THE ICRP NOSE MODELHealth Physics, 2002
- The GSF family of voxel phantomsPhysics in Medicine & Biology, 2001
- INFLUENCES OF PARAMETER UNCERTAINTIES WITHIN THE ICRP 66 RESPIRATORY TRACT MODELHealth Physics, 2001
- ESTIMATION OF ELECTRON ABSORBED FRACTIONS IN THE EXTRATHORACIC AIRWAYSHealth Physics, 2001