Author/Authors :
Kajaria, A School of Biomedical Engineering - Indian Institute of Technology (BHU), Varanasi, UP, India , Sharma, N School of Biomedical Engineering - Indian Institute of Technology (BHU), Varanasi, UP, India , Sharma, Sh School of Biomedical Engineering - Indian Institute of Technology (BHU), Varanasi, UP, India , Pradhan, S Department of Radiotherapy and Radiation Medicine - Institute of Medical Science (BHU), Varanasi, UP, India , Mandal, A Department of Radiotherapy and Radiation Medicine - Institute of Medical Science (BHU), Varanasi, UP, India , Aggarwal, L. M Department of Radiotherapy and Radiation Medicine - Institute of Medical Science (BHU), Varanasi, UP, India
Abstract :
Introduction: This study investigates basic dosimetric properties of unflattened
6 MV photon beam shaped by multileaf collimator and compares them with those of
flattened beams.
Materials and Methods: Monte Carlo simulation model using BEAM code
was developed for a 6MV photon beam based on Varian Clinic 600 unique performance
linac operated with and without a flattening filter in beam line. Dosimetric
features including lateral profiles, central axis depth dose, photon and electron spectra
were calculated for flattened and unflattened cases, separately.
Results: An increase in absolute depth dose with a factor of more than 2.4 was observed
for unflattened beam which was dependent on depth. PDDs values were found
to be lower for unflattened beam for all field sizes. Significant decrease in calculated
mlc leakage was observed when the flattening filter was removed from the beam line.
The total scatter factor, SCP was found to show less variation with field sizes for unflattened
beam indicating a decrease in head scatter. The beam profiles for unflattened
case are found to have lower relative dose value in comparison with flattened beam
near the field edge, and it falls off faster with distance.
Conclusion: Our study showed that increase in the dose rate and lower peripheral
dose could be considered as realistic advantages for unflattened 6MV photon beams.