A Study of the Impact of TRS-۴۸۳ Recommended Correction Factors for Dosimetry of Small Fields in Flattening Filter Free Beams used in TrueBeam Linear Accelerators
Publish place: Iranian Journal of Medical Physics، Vol: 18، Issue: 3
Publish Year: 1400
نوع سند: مقاله ژورنالی
زبان: English
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شناسه ملی سند علمی:
JR_IJMP-18-3_005
تاریخ نمایه سازی: 17 خرداد 1400
Abstract:
Introduction: To study the effect of the International Atomic Energy Agency (IAEA) TRS-۴۸۳ recommended beam quality correction factor in reference dosimetry and to examine the recommended field output correction factor for relative dosimetry of ۶-MV flattening filter free (FFF) small fields, used in a Varian TrueBeam linear accelerator (LINAC). Material and Methods: The beam quality and field output correction for ۶-MV FFF beams were adopted from the TRS-۴۸۳ protocol. Monte Carlo (MC) simulation of the output factor was performed using the PENELOPE-based PRIMO software and compared with the TRS-۴۸۳ corrected output factors. Two analytical anisotropic algorithm (AAA) models in the EclipseTM treatment planning system (TPS) were created; one with an output factor taken as the ratio of meter readings and one with an output factor obtained by multiplying the TRS-۴۸۳ correction factor by the ratio of meter readings. Besides, box field and dynamic conformal arc (DCA) plans were created for both AAA models for verification and validation. The patient-specific quality assurances (QA) for ten different targets were performed, and deviations between the measured and TPS-calculated point doses in both models were examined. Results: Separate beam quality correction factors for FFF beams in the TRS-۴۸۳ protocol only resulted in an improvement of ۰.۱% in reference dosimetry. The TRS-۴۸۳ corrected output factor was in a better agreement with the MC-calculated output factor. For a patient-specific QA of DCA plans, the output factor-corrected AAA dose calculation algorithm showed a better agreement between the measured and simulated doses. Also, there was a smaller deviation (۱.۲%) for the smallest target of ۰.۲۳ cc (۸ mm equivalent sphere diameter) used in this study. Conclusion:The field output factors for the LINAC small beams can be improved by incorporating the TRS-۴۸۳ correction factors. However, the extent of improvement that can be expected depends on the source model of the calculation algorithm and how these well-generalized corrections are suitable for user beams and detectors.
Keywords:
FFF Beams TRS , ۴۸۳ Linear Accelerator Small Field Dosimetry
Authors
Gopinath Mamballikalam
۱. R&D, Bharathiar University, Coimbatore, Tamilnadu, India ۳. Aster Medcity, Kochi, Kerala, India
Senthil kumar
Rajaji Hospital & Madurai Medical College, Madurai, Tamilnadu, India
Clinto C.O
Aster Medcity, Kochi, Kerala, India
Jaon bos R.C.
Aster Medcity, Kochi, Kerala, India
Ahamed Basith P.M.
Aster Medcity, Kochi, Kerala, India
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