PURPOSE: Proton therapy with Pencil Beam Scanning (PBS) has the potential to improve radiotherapy treatments. Unfortunately, its promises are jeopardized by the sensitivity of the dose distributions to uncertainties, including dose calculation accuracy in inhomogeneous media. Monte Carlo dose engines (MC) are expected to handle heterogeneities better than analytical algorithms like the pencil-beam convolution algorithm (PBA). In this study, an experimental phantom has been devised to maximize the effect of heterogeneities and to quantify the capability of several dose engines (MC and PBA) to handle these. METHODS: An inhomogeneous phantom made of water surrounding a long insert of bone tissue substitute (1×10×10 cm3) was irradiated with a m...
Monte Carlo (MC)-based dose calculations are generally superior to analytical dose calculations (ADC...
Purpose: Analytical algorithms have a limited accuracy when modeling very heterogeneous tumor sites....
Monte Carlo (MC)-based dose calculations are generally superior to analytical dose calculations (ADC...
PURPOSE: Proton therapy with Pencil Beam Scanning (PBS) has the potential to improve radiotherapy tr...
<div><p>In particle radiotherapy, range uncertainty is an important issue that needs to be overcome....
In particle radiotherapy, range uncertainty is an important issue that needs to be overcome. Because...
Purpose: In proton therapy, complex density heterogeneities within the beam path constitute a challe...
Purpose: In proton therapy, complex density heterogeneities within the beam path constitute a challe...
It is important for proton therapy to calculate accurately dose distributions in treatment planning....
Purpose: To develop an improved nuclear halo dose model of a pencil beam algorithm (PBA) for dose ca...
Purpose/Objective To validate experimentally a GATE/GEANT4-based(G4) Monte Carlo (MC) model in heter...
To exploit the advantages of proton beam therapy fully, it is necessary to perform three-dimensional...
Purpose: To develop an improved nuclear halo dose model of a pencil beam algorithm (PBA) for dose ca...
Purpose: To develop a pencil beam dose calculation algorithm for scanned proton beams that improves ...
Purpose: Monte Carlo (MC) dose calculation is generally superior to analytical dose calculation (ADC...
Monte Carlo (MC)-based dose calculations are generally superior to analytical dose calculations (ADC...
Purpose: Analytical algorithms have a limited accuracy when modeling very heterogeneous tumor sites....
Monte Carlo (MC)-based dose calculations are generally superior to analytical dose calculations (ADC...
PURPOSE: Proton therapy with Pencil Beam Scanning (PBS) has the potential to improve radiotherapy tr...
<div><p>In particle radiotherapy, range uncertainty is an important issue that needs to be overcome....
In particle radiotherapy, range uncertainty is an important issue that needs to be overcome. Because...
Purpose: In proton therapy, complex density heterogeneities within the beam path constitute a challe...
Purpose: In proton therapy, complex density heterogeneities within the beam path constitute a challe...
It is important for proton therapy to calculate accurately dose distributions in treatment planning....
Purpose: To develop an improved nuclear halo dose model of a pencil beam algorithm (PBA) for dose ca...
Purpose/Objective To validate experimentally a GATE/GEANT4-based(G4) Monte Carlo (MC) model in heter...
To exploit the advantages of proton beam therapy fully, it is necessary to perform three-dimensional...
Purpose: To develop an improved nuclear halo dose model of a pencil beam algorithm (PBA) for dose ca...
Purpose: To develop a pencil beam dose calculation algorithm for scanned proton beams that improves ...
Purpose: Monte Carlo (MC) dose calculation is generally superior to analytical dose calculation (ADC...
Monte Carlo (MC)-based dose calculations are generally superior to analytical dose calculations (ADC...
Purpose: Analytical algorithms have a limited accuracy when modeling very heterogeneous tumor sites....
Monte Carlo (MC)-based dose calculations are generally superior to analytical dose calculations (ADC...