Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/41655
Title: Investigation of the anisotropic distribution of microdosimetric quantities in the vicinity of X-ray-irradiated gold nanoparticles
Authors: DERRIEN, Jonathan 
Pauly, Nicolas
Adam, Jean-Francois
RENIERS, Brigitte 
Issue Date: 2023
Publisher: PERGAMON-ELSEVIER SCIENCE LTD
Source: RADIATION PHYSICS AND CHEMISTRY, 213 (Art N° 111232)
Abstract: High-Z nanoparticles incorporated in tumors have great potential to enhance radiotherapy treatments by increasing the absorbed radiation dose in the vicinity of the nanoparticle. However, current Monte Carlo simulations estimate dose enhancement metrics in 1D, neglecting the anisotropy of the energy deposition around the nanoparticle. This could have radiobiological consequences and affect treatment accuracy. Accurate knowledge of the spatial distribution of the dose or other microdosimetric quantities is necessary for predicting radiobiological outcomes using biophysical models. In this study, we utilized a new combination of two Monte Carlo Variance Reduction Techniques (VRTs) to estimate microdosimetric quantities at the nanoscale, taking into account the anisotropy of the microdosimetric distributions. Our results show significant anisotropy in multi-events frequency-mean specific energy, as well as in microdosimetric distributions. These findings highlight the importance of considering anisotropy in microdosimetric distributions when predicting radiobiological outcomes and suggest that current 1D simulations may not accurately represent the real microdosimetric effects. Our work contributes to the development of multiscale dosimetry approaches for radiotherapy treatments with high-Z nanoparticles.
Notes: Derrien, J (corresponding author), Inst Super Ind Bruxelles IRISIB, NEMP Appl Res Lab, Inst Rech, Brussels, Belgium.; Derrien, J (corresponding author), Haute Ecole Bruxelles Brabant, Inst Super Ind Bruxelles HE2B ISIB, Lab Phys Nucl & Radiat, Brussels, Belgium.
jderrien@isib.he2b.be
Keywords: Microdosimetry;X-rays;Geant4-DNA;Monte Carlo simulations;Anisotropy
Document URI: http://hdl.handle.net/1942/41655
ISSN: 0969-806X
e-ISSN: 1879-0895
DOI: 10.1016/j.radphyschem.2023.111232
ISI #: 001067208300001
Rights: 2023 Elsevier Ltd. All rights reserved
Category: A1
Type: Journal Contribution
Appears in Collections:Research publications

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