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Estimating TPR2O,io Under Non-Reference Conditions Using a Geometric Sequence Approach

  • F. A. Rizaldi
  • , S. Herwiningsih*
  • , C. S. Widodo
  • , F. K. Hentihu
  • , A. K. Anto
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

An alternative approach to estimate the Tissue Phantom Ratio (TPR) at depths of 20 cm and 10 cm ('TPITh.io) under non-reference conditions is required to address situations where a 10 x 10 cm2 field size is not achievable on a specific Linear Accelerator (LINAC) during a beam quality test. This study aims to estimate the TPR20,10 under non-reference conditions using a geometric sequence approach, and to compare it with the TPR?o.io under non-reference conditions estimated using the Sauer method, the Palmas method, a linear fit approach, as well as with the TPTho, io under reference conditions calculated using the TRS-398 protocol. The first step in this study was measuring the percentage depth dose (PDD), D20cm, and D10cm with field size variations from 4 x 4 cm2 to 10 x 10 cm2 for both 6 MV and 10 MV X-ray beams. The PDD were used to estimate the TPITh.io using a geometric sequence approach, the Sauer method, the Palmans method, and a linear fit approach, and to calculate the TPR2o.n1 using the TRS-398 protocol. The D20cm and Di0cm were also used to calculate the TPRoo.io using the TRS-398 protocol. The TPRîo, io for 6 MV and 10 MV X-ray beams estimated using the geometric sequence approach were 0.683 ± 0.004 and 0.742 ± 0.005, respectively. The level of precision that could be reached by the geometric sequence approach is potentially equivalent to the TRS-398 protocol, the Sauer method, the Palmans method, and the linear fit approach. The TPRoo.io for 6 MV and 10 MV X-ray beams estimated using the geometric sequence method did not show a significant difference compared with the TPRoo.io calculated using the TRS-398 protocol. However, the TPRoo.io for 6 MV and 10 MV X-ray beams estimated using the geometric sequence approach showed a significant difference compared with those TPRoo.io estimated using the Sauer method and the Palmans method.

Original languageEnglish
Pages (from-to)73-79
Number of pages7
JournalAtom Indonesia
Volume52
Issue number1
DOIs
Publication statusPublished - 2026

Keywords

  • Beam quality test of linear accelerator
  • Geometric sequence approach
  • TPR20,10 under non-reference conditions
  • TPR20,10 under reference conditions
  • X-ray megavoltage photon beam

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