Abstract
The Percentage Depth Dose (PDD) and dose profile of X-Ray output from a LINAC therapy device has been modeled and analyzed. The research was conducted by simulation method through the use of the Particle and Heavy Ion Transport System (PHITS) program. The LINAC therapy device modeled in this work refers to the Siemens Primus LINAC therapy device, which is operated at 6 MV, 10 MV, and 18 MV voltages. Determination of PDD was carried at a depth of 0-30 cm and dose profile at a depth of 0-20 cm in a water phantom, placed at 100 cm from the source, which is exposed to a radiation field area of 10×10 cm 2. Results from the LINAC therapy device modeling agree with the actual X-ray apparatus and have produced Bremsstrahlung X-ray. The PDD curve analysis found that the maximum doses are at a depth of 1.5 cm, 2.5 cm, and 3.4 cm. The value of the build-up factor for each LINAC voltage agrees with the reference. Additionally, the results of the analysis of the dose profile suggest that the X-ray output has a good degree of uniformity. The flatness of the dose profile occurs at the depth of 20 cm with a percentage value of flatness at 1.6%, 1.9%, and 1.2%. The flatness values are all less than 2%. The flatness values show a ≤ 2% deviation from the reference value, which is below the tolerance range required in a measurement.
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CITATION STYLE
Bilalodin, B., & Abdullatif, F. (2022). Modeling and Analysis of Percentage Depth Dose (PDD) and Dose Profile of X-Ray Beam Produced by Linac Device with Voltage Variation. Jurnal Ilmiah Teknik Elektro Komputer Dan Informatika, 8(2), 206. https://doi.org/10.26555/jiteki.v8i2.23622
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