This paper presents an alternative method to tune Monte Carlo electron beam parameters to match measured data using a minimal set of variables in order to reduce the model setup time prior to clinical implementation of the model. Monte Carlo calculations provide the possibility of a powerful treatment planning verification technique. The nonstandardized and nonautomated process of tuning the required accelerator model is one of the reasons for delays in the clinical implementation of Monte Carlo techniques. This work aims to establish and verify an alternative tuning method that can be carried out in a minimal amount of time, allowing it to be easily implemented in a clinical setting by personnel with minimal experience with Monte Carlo met...
Monte Carlo techniques have been shown to be the most accurate method of modelling radiation transp...
Monte Carlo simulation is an accurate and detailed method of modelling the complex electron source c...
The present study is focused on the clinical validation of two electron Monte Carlo (eMC) based trea...
This paper presents an alternative method to tune Monte Carlo electron beam parameters to match meas...
This paper presents an alternative method to tune Monte Carlo electron beam parameters to match meas...
With the development of modern linear accelerators, the dosimetry of complex electron beams techn...
Dose calculation plays an important role in the accuracy of radiotherapy treatment planning and beam...
Accurate dose calculation in treatment planning becomes crucial in modern radiotherapy. It is widely...
Introduction: In recent decades, several Monte Carlo codes have been introduced for research and med...
The accuracy of Monte Carlo simulations of clinical photon beams in radiation oncology is dependent ...
Current electron beam treatment planning algorithms are inadequate to calculate dose distributions i...
PURPOSE Modulated electron radiotherapy (MERT) promises sparing of organs at risk for certain tum...
In the present work, Monte Carlo (MC) models of electron beams (energies 4, 12 and 18MeV) from an El...
Currently, commercial treatment planning systems are validated against Monte Carlo (MC) simulation i...
The Monte Carlo (MC) method has been shown through many research studies to calculate accurate dose ...
Monte Carlo techniques have been shown to be the most accurate method of modelling radiation transp...
Monte Carlo simulation is an accurate and detailed method of modelling the complex electron source c...
The present study is focused on the clinical validation of two electron Monte Carlo (eMC) based trea...
This paper presents an alternative method to tune Monte Carlo electron beam parameters to match meas...
This paper presents an alternative method to tune Monte Carlo electron beam parameters to match meas...
With the development of modern linear accelerators, the dosimetry of complex electron beams techn...
Dose calculation plays an important role in the accuracy of radiotherapy treatment planning and beam...
Accurate dose calculation in treatment planning becomes crucial in modern radiotherapy. It is widely...
Introduction: In recent decades, several Monte Carlo codes have been introduced for research and med...
The accuracy of Monte Carlo simulations of clinical photon beams in radiation oncology is dependent ...
Current electron beam treatment planning algorithms are inadequate to calculate dose distributions i...
PURPOSE Modulated electron radiotherapy (MERT) promises sparing of organs at risk for certain tum...
In the present work, Monte Carlo (MC) models of electron beams (energies 4, 12 and 18MeV) from an El...
Currently, commercial treatment planning systems are validated against Monte Carlo (MC) simulation i...
The Monte Carlo (MC) method has been shown through many research studies to calculate accurate dose ...
Monte Carlo techniques have been shown to be the most accurate method of modelling radiation transp...
Monte Carlo simulation is an accurate and detailed method of modelling the complex electron source c...
The present study is focused on the clinical validation of two electron Monte Carlo (eMC) based trea...