Published 2000 | Version v1
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Calculating patient specific doses in X-ray diagnostics and from radiopharmaceuticals

  • 1. University of Helsinki (Finland). Dept. of Physics, Faculty of Science

Description

The risk associated with exposure to ionising radiation is dependent on the characteristics of the exposed individual. The size and structure of the individual influences the absorbed dose distribution in the organs. Traditional methods used to calculate the patient organ doses are based on standardised calculation phantoms, which neglect the variance of the patient size or even sex. When estimating the radiation dose of an individual patient, patient specific calculation methods must be used. Methods for patient specific dosimetry in the fields of X-ray diagnostics and diagnostic and therapeutic use of radiopharmaceuticals were proposed in this thesis. A computer program, ODS-60, for calculating organ doses from diagnostic X-ray exposures was presented. The calculation is done in a patient specific phantom with depth dose and profile algorithms fitted to Monte Carlo simulation data from a previous study. Improvements to the version reported earlier were introduced, e.g. bone attenuation was implemented. The applicability of the program to determine patient doses from complex X-ray examinations (barium enema examination) was studied. The conversion equations derived for female and male patients as a function of patient weight gave the smallest deviation from the actual patient doses when compared to previous studies. Another computer program, Intdose, was presented for calculation of the dose distribution from radiopharmaceuticals. The calculation is based on convolution of an isotope specific point dose kernel with activity distribution, obtained from single photon emission computed tomography (SPECT) images. Anatomical information is taken from magnetic resonance (MR) or computed tomography (CT) images. According to a phantom study, Intdose agreed within 3 % with measurements. For volunteers administered diagnostic radiopharmaceuticals, the results given by Intdose were found to agree with traditional methods in cases of medium sized patients. For patients undergoing systemic radiation therapy, the results by Intdose differed from measurements due to dynamic Redistribution of the radiopharmaceutical since the calculation was based only on one set of SPECT images. In general, traditional methods using average sized calculation phantoms are intended to give average doses for an exposed population. For calculating doses to individual patients, patient specific calculation methods, e.g. ones proposed in this thesis, should be used. (orig.)

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Additional details

Publishing Information

ISBN
951-45-8198-9
Imprint Pagination
76 p.
Report number
HU-P-D--82

INIS

Country of Publication
Finland
Country of Input or Organization
Finland
INIS RN
32001519
Subject category
S62: RADIOLOGY AND NUCLEAR MEDICINE;
Resource subtype / Literary indicator
Thesis
Descriptors DEI
CALCULATION METHODS; DOSE RATES; DOSIMETRY; ORGANS; PATIENTS; PHANTOMS; RADIOPHARMACEUTICALS; X-RAY RADIOGRAPHY
Descriptors DEC
BODY; DRUGS; INDUSTRIAL RADIOGRAPHY; LABELLED COMPOUNDS; MATERIALS; MATERIALS TESTING; MOCKUP; NONDESTRUCTIVE TESTING; RADIOACTIVE MATERIALS; STRUCTURAL MODELS; TESTING

Optional Information

Notes
56 refs. The thesis includes also five previous publications