The effect of the primary collimator and flattening filter on asymmetric fields for a Siemens PRIMUS linear accelerator
F. Cutanda, S. T. Vargas-Castrillon
Abstract
Homogeneity for highly asymmetric fields has been studied for a Siemens PRIMUS linear accelerator. The flattening filter has a radius smaller than the primary collimator one, creating inhomogeneities that affect large fields in areas far from the collimator axis, and asymmetric fields with large offset. Profiles and absolute dose have been measured in fields with two jaws at maximal position (20 cm) and the other two at maximal overtravel (10 cm.), corresponding to 10 x 10 fields with extreme offset. Profiles have a remarkable gradient decreasing towards the beam edge, making these fields unsuitable for treatments. Results show that the design of the primary collimator and flattening filter assembly has direct consequences in homogeneity. This can have clinical consequences for treatments involving fields that include these inhomogeneous areas. Comparisons with the treatment planning system (Philips Pinnacle) calculations, that computes under the hypotheses of a uniformly flattened beam, result in severe discrepancies.
Create a lesson
Related papers
T2 estimation from MOLLI acquisitions
Catarina N Carvalho, Andreia S Gaspar, Rita G Nunes et al.
The Magnetic-Resonance-Based, Omni-Directional Hydrophone
Nathan Thyberg, Davi Cavinatto, Katia Oler et al.
Closing the gap: A two-site MLC matching study for Varian TrueBeam Linear Accelerators
Michael Douglass, Corey Bridger, Mitchell Herrick et al.
Geant4 Simulation of an X-ray Beam Monitoring Detector based on plastic scintillators
C. H. Zepeda Fernández, E. Moreno Barbosa, J. M. Arredondo-Velázquez et al.
Dosimetric equivalence of deep learning prostate contours after LDR brachytherapy: pre-declared margins, patient-level acceptance thresholds and the incremental predictive value of DVH indices
Louis-Bernard St-Cyr, Anne Saint-Laurent, José Angel Lesteiro-Tejeda et al.
Fail-closed conformal multiresolution error control for conservative three-dimensional dose remapping in synthetic phantoms
Yuntao Wang