José Manuel García‐Aznar
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Articles (10)
Effects of tumour heterogeneous properties on modelling the transport of radiative particles
Dose calculation plays a critical role in radiotherapy (RT) treatment planning, and there is a growing need to develop accurate dose deposition models that incorporate heterogeneous tumour properties. Deterministic models have demonstrated their capability in this regard, making them the focus of recent treatment planning studies as they serve as a basis for simplified models in RT treatment planning. In this study, we present a simplified deterministic model for photon transport based on the Boltzmann transport equation (BTE) as a proof‐of‐concept to illustrate the impact of heterogeneous tumour properties on RT treatment planning. We employ the finite element method (FEM) to simulate the photon flux and dose deposition in real cases of diffuse intrinsic pontine glioma (DIPG) and neuroblastoma (NB) tumours. Importantly, in light of the availability of pipelines capable of extracting tumour properties from magnetic resonance imaging (MRI) data, we highlight the significance of such data. Specifically, we utilise cellularity data extracted from DIPG and NB MRI images to demonstrate the importance of heterogeneity in dose calculation. Our model simplifies the process of simulating a RT treatment system and can serve as a useful starting point for further research. To simulate a full RT treatment system, one would need a comprehensive model that couples the transport of electrons and photons.
Year:
2023
Collaborators (9)
María José Gómez-Benito
Full professor
Universidad de Zaragoza - Campus Río Ebro
Victor Ogesa Juma
Postdoctoral Research and Teaching Fellow
The University of British Columbia
Silvia Hervas-Raluy
Universidad de Zaragoza
Pilar Alamán
Universidad de Zaragoza
Bernhard Schrefler
professor emeritus
University of Padua
Salvador Peréz-Huertas
Universidad de Granada
María Teresa Sánchez
Profesora
Universidade de Vigo
Alejandra Gonzalez Loyola
-
Elena García-Gareta
Universidad de Zaragoza

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