Published October 2012
NDS Staff Publication
Estimation of neutron-equivalent dose in organs of patients undergoing radiotherapy by the use of a novel online digital detector
Description
Neutron peripheral contamination in patients undergoing high-energy photon
radiotherapy is considered as a risk factor for secondary cancer induction.
Organ-specific neutron-equivalent dose estimation is therefore essential for a
reasonable assessment of these associated risks. This work aimed to develop a
method to estimate neutron-equivalent doses in multiple organs of radiotherapy
patients. The method involved the convolution, at 16 reference points in an
anthropomorphic phantom, of the normalized Monte Carlo neutron fluence
energy spectra with the kerma and energy-dependent radiationweighting factor.
This was then scaled with the total neutron fluence measured with passive detectors, at the same reference points, in order to obtain the equivalent doses
in organs. The latter were correlated with the readings of a neutron digital
detector located inside the treatment room during phantom irradiation. This
digital detector, designed and developed by our group, integrates the thermal
neutron fluence. The correlation model, applied to the digital detector readings
during patient irradiation, enables the online estimation of neutron-equivalent
doses in organs. The model takes into account the specific irradiation site, the
field parameters (energy, field size, angle incidence, etc) and the installation
(linac and bunker geometry). This method, which is suitable for routine clinical
use, will help to systematically generate the dosimetric data essential for the
improvement of current risk-estimation models.