Abstract
An Addendum to the AAPM's TG-51 protocol for the determination of absorbed dose to water is presented for electron beams with energies between 4 MeV and 22 MeV ((Formula presented.)). This updated formalism allows simplified calibration procedures, including the use of calibrated cylindrical ionization chambers in all electron beams without the use of a gradient correction. New (Formula presented.) data are provided for electron beams based on Monte Carlo simulations. Implementation guidance is provided. Components of the uncertainty budget in determining absorbed dose to water at the reference depth are discussed. Specifications for a reference-class chamber in electron beams include chamber stability, settling, ion recombination behavior, and polarity dependence. Progress in electron beam reference dosimetry is reviewed. Although this report introduces some major changes (e.g., gradient corrections are implicitly included in the electron beam quality conversion factors), they serve to simplify the calibration procedure. Results for absorbed dose per linac monitor unit are expected to be up to approximately 2 % higher using this Addendum compared to using the original TG-51 protocol.
| Original language | English (US) |
|---|---|
| Pages (from-to) | 5840-5857 |
| Number of pages | 18 |
| Journal | Medical physics |
| Volume | 51 |
| Issue number | 9 |
| DOIs | |
| State | Published - Sep 2024 |
Keywords
- $k_{Q}$
- absorbed-dose calibration coefficient
- beam quality conversion factor
- dosimetry protocol
- electron beam
- ionization chamber
- uncertainty analysis
ASJC Scopus subject areas
- Biophysics
- Radiology Nuclear Medicine and imaging
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