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KMID : 1038720230340020015
Progress in Medical Physics
2023 Volume.34 No. 2 p.15 ~ p.22
Comparison between Old and New Versions of Electron Monte Carlo (eMC) Dose Calculation
Jung Seong-Moon

Son Jae-Man
Jin Hyeong-Min
Kang Seong-Hee
Park Jong-Min
Kim Jung-In
Choi Chang-Heon
Abstract
This study compared the dose calculated using the electron Monte Carlo (eMC) dose calculation algorithm employing the old version (eMC V13.7) of the Varian Eclipse treatment-planning system (TPS) and its newer version (eMC V16.1). The eMC V16.1 was configured using the same beam data as the eMC V13.7. Beam data measured using the VitalBeam linear accelerator were implemented. A box-shaped water phantom (30¡¿30¡¿30 cm3) was generated in the TPS.
Consequently, the TPS with eMC V13.7 and eMC V16.1 calculated the dose to the water phantom delivered by electron beams of various energies with a field size of 10¡¿10 cm2 . The calculations were repeated while changing the dose-smoothing levels and normalization method. Subsequently, the percentage depth dose and lateral profile of the dose distributions acquired by eMC V13.7 and eMC V16.1 were analyzed. In addition, the dose-volume histogram (DVH) differences between the two versions for the heterogeneous phantom with bone and lung inserted were compared. The doses calculated using eMC V16.1 were similar to those calculated using eMC V13.7 for the homogenous phantoms. However, a DVH difference was observed in the heterogeneous phantom, particularly in the bone material. The dose distribution calculated using eMC V16.1 was comparable to that of eMC V13.7 in the case of homogenous phantoms. The version changes resulted in a different DVH for the heterogeneous phantoms. However, further investigations to assess the DVH differences in patients and experimental validations for eMC V16.1, particularly for heterogeneous geometry, are required.
KEYWORD
Electron dose calculation, eMC, Eclipse, Treatment-planning system
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