Published August 21, 2010 | Version v1
Journal article

Monte Carlo dose calculation improvements for low energy electron beams using eMC

  • 1. Division of Medical Radiation Physics, Inselspital and University of Bern, CH-3010 Bern (Switzerland)
  • 2. Clinic for Radiation-Oncology, Lindenhof Hospital, Berne (Switzerland)

Description

The electron Monte Carlo (eMC) dose calculation algorithm in Eclipse (Varian Medical Systems) is based on the macro MC method and is able to predict dose distributions for high energy electron beams with high accuracy. However, there are limitations for low energy electron beams. This work aims to improve the accuracy of the dose calculation using eMC for 4 and 6 MeV electron beams of Varian linear accelerators. Improvements implemented into the eMC include (1) improved determination of the initial electron energy spectrum by increased resolution of mono-energetic depth dose curves used during beam configuration; (2) inclusion of all the scrapers of the applicator in the beam model; (3) reduction of the maximum size of the sphere to be selected within the macro MC transport when the energy of the incident electron is below certain thresholds. The impact of these changes in eMC is investigated by comparing calculated dose distributions for 4 and 6 MeV electron beams at source to surface distance (SSD) of 100 and 110 cm with applicators ranging from 6 x 6 to 25 x 25 cm2 of a Varian Clinac 2300C/D with the corresponding measurements. Dose differences between calculated and measured absolute depth dose curves are reduced from 6% to less than 1.5% for both energies and all applicators considered at SSD of 100 cm. Using the original eMC implementation, absolute dose profiles at depths of 1 cm, dmax and R50 in water lead to dose differences of up to 8% for applicators larger than 15 x 15 cm2 at SSD 100 cm. Those differences are now reduced to less than 2% for all dose profiles investigated when the improved version of eMC is used. At SSD of 110 cm the dose difference for the original eMC version is even more pronounced and can be larger than 10%. Those differences are reduced to within 2% or 2 mm with the improved version of eMC. In this work several enhancements were made in the eMC algorithm leading to significant improvements in the accuracy of the dose calculation for 4 and 6 MeV electron beams of Varian linear accelerators.

Availability note (English)

Available from http://dx.doi.org/10.1088/0031-9155/55/16/S11

Additional details

Identifiers

DOI
10.1088/0031-9155/55/16/S11;
PII
S0031-9155(10)42652-4;

Publishing Information

Journal Title
Physics in Medicine and Biology
Journal Volume
55
Journal Issue
16
Journal Page Range
p. 4577-4588
ISSN
0031-9155
CODEN
PHMBA7

Conference

Title
2. european workshop on Monte Carlo treatment planning
Acronym
MCTP2009
Dates
19-21 Oct 2009
Place
Cardiff, Wales (United Kingdom)

INIS

Country of Publication
United Kingdom
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
42025256
Subject category
S62: RADIOLOGY AND NUCLEAR MEDICINE;
Resource subtype / Literary indicator
Conference
Descriptors DEI
ACCURACY; ALGORITHMS; DEPTH DOSE DISTRIBUTIONS; ELECTRON BEAMS; LINEAR ACCELERATORS; MONTE CARLO METHOD; RADIATION DOSES
Descriptors DEC
ACCELERATORS; BEAMS; CALCULATION METHODS; DOSES; LEPTON BEAMS; MATHEMATICAL LOGIC; PARTICLE BEAMS; RADIATION DOSE DISTRIBUTIONS; SPATIAL DOSE DISTRIBUTIONS